entry stringlengths 6 10 | entry_name stringlengths 5 11 | protein_name stringlengths 3 2.44k | sequence stringlengths 2 35.2k | function stringlengths 7 11k |
|---|---|---|---|---|
Q9UTA9 | YL89_SCHPO | Uncharacterized methyltransferase C25B8.09 (EC 2.1.1.-) | MIGRTFKTDIADYETARPDYPPQITEWLNDEFSVNETSTILELGAGSGKLTPRIIASQPKEIIAVDTYVEMLDVLKKKFPNVDCRVGSAMAIPLEDESVDLVACGQCFHWFANEEALKEIYRVLKPNGKLALIWNIRDNSVPWVEKCSQLLEKCRGGPLNMFEKAAELFPGYGFTELKQSLFTSAKKYSIEDLHRLMNSFSSINRLPVEEKEKMHAELDEIIKTIPRAQNTDQVDFNILTVAYSSEKVPIN | Probable methyltransferase. |
Q9UTB4 | MSS51_SCHPO | Protein mss51 | MSFLKNLFKKKSPTHELFHPLSRSPLTALRRRSEHIKQVYRCPISGKSVEYECPESGFPTHCNRTHWEQDKIHQSLIPKLRQINEDYHDLARPNPLPELLKLPGPMEEDEVVSLLSWDSFFYTRDFPKFQSSRTARHITSLLTYPMSIGAILHKNSPYNLKNGLTPQGLQSLTALRYMLHRPLSAQSTDPRPTRIFVLGATKECSLPPSIWLQGLNFLFPGRLFQLHFIGPEVVVPSKQPNLPSPLSLHFHQDYYHNLHRVGAFEPFDPYYDTFFLPMPLISHPLYSSSWIPTLHDLVSTRCSVWLTSPSSQRTTKDLEV... | Has a dual role in the assembly of cytochrome oxidase subunit 1 (cox1). It has a regulative function on cox1 synthesis, acting as a translational activator specific for the cox1 mRNA, and it also binds to newly synthesized cox1 protein (By similarity). |
Q9UTC9 | PFD2_SCHPO | Probable prefoldin subunit 2 | MAEQPSRQQILQTQYNSYKSRLQQIAQKIVDLETDADEHKLVMDTLNSMDNNRRCFRMIHGVLVERTVGTVVPILKTTQEGIQTAMNGLLDQYKQLEAEFQKFQKDNKIQVVRQ | Binds specifically to cytosolic chaperonin (c-CPN) and transfers target proteins to it. Binds to nascent polypeptide chain and promotes folding in an environment in which there are many competing pathways for nonnative proteins (By similarity). |
Q9UTD1 | YTH1_SCHPO | mRNA 3'-end-processing protein yth1 | MTDYIKDKAIAADFSSVQFRFDNYLKQNFNFGRSALLNSGNGRDSGSKMGSVVCKHWLRGLCKKGEQCDFLHEYNLKKMPPCHFYAERGWCSNGEECLYLHLDPSKQVGVCAWYNMGFCPLGPICRGKHVRKPRPCPKYLAGFCPLGPNCPDAHPKHSEPPHPPQKRKDW | Component of the cleavage factor I (CF I) involved in pre-mRNA 3'-end processing. |
Q9UTD3 | YIP5_SCHPO | Protein YIP5 (YPT-interacting protein 5) | MAHEIEIDSEADLGRTTFEAEDLYKQRTPITKPPAPRLQSRRASMQETPWTIKDSFNVETKDVVQRCIHTLIPTVNFFDVVDDRPDLYGPFWITTTVIQALFFSNSITEYARYATGHGTSGYSIKKLISAASIIYGYTTIIAVLLWGILVWNKCNPKLLDCLCLYGYANIVWLPVSLATPPFGLLSTLASHIVKYVLTGIGLLISIVFLTRNLYPICQQAGSNLCKLLLFGIIVFHCLLALSLQLIFFS | Possible role in vesicle-mediated transport. May be involved in proper membrane localization of Rab GTPases (By similarity). |
Q9UTD4 | PFD4_SCHPO | Probable prefoldin subunit 4 | MEQVPVLAEDQRNLNEFSVLHSRKAIQELDIKNLKTQIEDIVDAKNECELLDEDDGDDIPALKVGDAFFQVSLPVLLDQLEQSEESLEKQVDVLRSSMEKDETRIQELKSMLYSKFHDQINLD | Binds specifically to cytosolic chaperonin (c-CPN) and transfers target proteins to it. Binds to nascent polypeptide chain and promotes folding in an environment in which there are many competing pathways for nonnative proteins (By similarity). |
Q9UTD7 | RRP15_SCHPO | Ribosomal RNA-processing protein 15 | MAKSQRSQIKNEDISFVSQEDDSSKKFVKDDSENSEEELEDLNSEDEFYQSNSSEDEIEEEVQESTIADDIADILNQQVTQTDEQDTPVLSLSKKSKKALRKSNAEKKDSKLRTSRRRERLRKEMVGRVTSVVAVNAETAKALFTHERELRRIARRGVVQLFNAVRTAQLQSSLNRENISGGRTAREQKVKELSKASFLDLIKSQ | Constituent of pre-60S ribosomal particles. Required for large subunit rRNA maturation (By similarity). |
Q9UTE9 | TIM10_SCHPO | Mitochondrial import inner membrane translocase subunit tim10 | MSMFGIGKNNQTINPQNIAMAEQEVEMMSDIFNRLVMTCHKKCISPKYYEADLTKGESVCIDRCVSKYFEANQSLSQHMQKRGQENPTP | Mitochondrial intermembrane chaperone that participates in the import and insertion of multi-pass transmembrane proteins into the mitochondrial inner membrane. Also required for the transfer of beta-barrel precursors from the TOM complex to the sorting and assembly machinery (SAM complex) of the outer membrane. Acts as... |
Q9UTF8 | UGO1_SCHPO | Mitochondrial fusion and transport protein ugo1 | MNPYRPYVVVNNVEPTFSITPEPTFETQPTISKSEIFETLRSILVTKYLTTFFVQPLEVAKTVCQVEEYLPKRTKIERDGKQTKEPYDEDIPDGTEQEGLSDDEHEIYAYFETPTTEKAVTEQLAEKLCVDASGYVTDPSNLIERSYTIHSKRFSIKSIISELWEKEGARGLWKGHTISFLHNLLYSGLQSWLSATLSGALAIADPNIISPIDSVRPLLSLFIKSITSAISALILSPLDIARTKIILFPISSSSYLSSASETSGNSHKKFKPLTIRQCLKALPFYCPSSLILPTVCYVSLPPFVSSVLPLTFRNFLGSSP... | Required for mitochondrial fusion as well as normal mitochondrial morphology. May coordinate fusion of inner and outer membranes during mitochondrial fusion (By similarity). |
Q9UTH2 | ETFB_SCHPO | Probable electron transfer flavoprotein subunit beta (Beta-ETF) | MSKIRILVGVKRTLDYMLKPRINATKTAVDLSGQKMSINPFCDIAVEEAIRMKETLKNRIEDTLVVTAGQTSSEPILRQCLAKGIGRAALINVGEKELEPLSVAKLLKATVEKEKSNLVLLGKQAIDDDAHQTGGMLAAMLGWPQFTSASKVRIEGDKVIVTREIDGGEETLSSTLPAIITTDLRLNVPRFANLAKVMKARKAPLGKMSPEDLGVTIDQRLQTVSVSEPVQKRQNIMVKSVDEMVKTLKELGAL | The electron transfer flavoprotein serves as a specific electron acceptor for several dehydrogenases, including five acyl-CoA dehydrogenases, glutaryl-CoA and sarcosine dehydrogenase. It transfers the electrons to the main mitochondrial respiratory chain via ETF-ubiquinone oxidoreductase (ETF dehydrogenase) (By similar... |
Q9UTJ4 | CGR1_SCHPO | rRNA-processing protein cgr1 | MVNGTKGVCVSGKPWKTEKKAYNRSGLADAQRTPYEKRMEQKRKLDEIKEREKELKREKEEQRAAHAEKIRTRRQAKADRERMELLQAKLHQKVIDRRRRREKRNKMLKER | Involved in nucleolar integrity and required for processing of the pre-rRNA for the 60S ribosome subunit. |
Q9UTK1 | COX16_SCHPO | Cytochrome c oxidase assembly protein cox16, mitochondrial | MLFYRFKSWYRLQAKKSPFIYVGLPFLSSVLLVWSCLIPISQVKFNRRDEQVKSLSRDAELDIIKRRRKVDVNEEYYRILLDQLNLQNEEYENKRVKRLKGEPTWEGNSSDKE | Required for the assembly of the mitochondrial respiratory chain complex IV (CIV), also known as cytochrome c oxidase. May participate in merging the COX1 and COX2 assembly lines. |
Q9UTL0 | YIVG_SCHPO | MIP18 family protein C144.16 | MSANLQNENPEVKELNQLPSRVEEEEDLLLSSTKQWLTEIESEQTNIKEERDPIDPQEIYDLLAKINDPEHPLTLAQLSVVKLEDIEVVDNVEGDSYITVHITPTIPHCSMCTLIGLCIRVRLERCLPPRFHVDVKVKKGTHASESQVNKQLNDKERVAAACENEQLLSVLNGMMATCV | May play a role in chromosome segregation through establishment of sister chromatid cohesion. |
Q9UTN7 | MUG95_SCHPO | Meiotically up-regulated gene 95 protein | MNLFVYIAQNPTLTKWFFCCVCTILTMPFFKKPYRKRGISRTPYEWLTYADKCVIELSKSELKPNEEKELPKDIKEDCKTVEEKEKVVPRKPLQSEGINEDDSQKNGELIVLHGINHQAAMLTACGLFMVTSSNTNKWKIAFASFLLGMFFTQFGFQKSERSINAEKLESIEKPENDN | Has a role in meiosis. |
Q9UTP5 | MU162_SCHPO | Meiotically up-regulated gene 162 protein | MDDEVYKQRLTALNNLRIVIFFDILIILLGYIGTWNLKTLQLVNPSLWSFSPSLWIYIRGTVLCADCIFTAGSANEYSAVQNSVFQVSSLMFYGLMMEFFGYSFDRVGCMELAFISFSAACYFNIRSIKSLSLKNKNWTIISIIEIPIKLHFILNVLLFLKFSEYMLPLLGRVHLSYHLFALWVINLYIWIKLIDSKDFVLGFLAGLSVLLLNTGSLITAKPLISYFNLLTSCLIIFPSIWIYAIEKKNFKNLSYEDDDYRNYW | Has a role in meiosis. |
Q9UTQ9 | SPC2_SCHPO | Signal peptidase complex subunit 2 (Microsomal signal peptidase subunit 2) | MPKYNVSDFKSKFDKELTNHFNKNGYKQSFVFEDIRLLIAIACIIPAGLAFGIEYVYGFGVLKSYLKYLLPLYFLASCLLTFWSSVVKGSTVYVATKKERHIKISADTFLPLKNKPLITTKFTVLKNRNAVQLEWSVPVAHIFEEDGQISSATFEAEISKYLSQIEN | Component of the signal peptidase complex (SPC) which catalyzes the cleavage of N-terminal signal sequences from nascent proteins as they are translocated into the lumen of the endoplasmic reticulum. Enhances the enzymatic activity of SPC and facilitates the interactions between different components of the translocatio... |
Q9UTR7 | MCP3_SCHPO | Meiotic coiled-coil protein 3 (Meiotically up-regulated gene 7 protein) | MTKETHENHLRTHNGIFPVSLLSTQARQLLNFKLKSPSYYLLNSFKLLVKSEGNNQSTTADVTLTKSPNAYHASSAREEKDLQVSRRDTCFYCSRKIIKCICNEEHVGIESVQLKLILLLCQNLPNVTTNAKKYFSSLADGHNFTLTLYKFSLDNQTFSQLLSRFKSFATLTELLQVHNVMLQVNFSFQARQLNTEIQLRRCHSLEKTWKFLFGDYELPDVLKDMESSNSDWSDTSLKRIAYLCSLVEELKLHSSIMNDKYVCLVSKHNNALEDKFNSEAARQLLQKSLSIVASNLKQAENKTISYEEKLSIAQNSINEI... | Has a role in meiosis. |
Q9UU95 | MU128_SCHPO | Meiotically up-regulated gene 128 protein | MEYANLHYVKESSNLERSSTYKSSKIQDEAKQLLYDYVYIKEKLLTTSSNSLTHYQWYLIYKHTCRCFQQVVRIVYWFLGNQVIRENFSIKKRKPHNHIPQLLEQCTCIAESFEGIYTKKQILYFKCYGTFKTWKKIANFPHL | Has a role in meiosis. |
Q9UUA0 | ECM1_SCHPO | Shuttling pre-60S factor C23B6.02c | MAKKQSIRSRNFRRSDPAYDLDSSTAIENETKLSVKEKVAKEIANIALRSGGSESNGISKKKKNKKQTSKKAKDKLAAALKAQAREERLDTKISKSLQKQEKLKARKQGDE | Pre-ribosomal factor involved in 60S ribosomal protein subunit export from the nucleus. |
Q9UUA4 | SEC66_SCHPO | Translocation protein sec66 | MVSIYVPLIYITILMGSMYGVSRFVRKSKNQESKPVSEEWFGENYSRNIFFSLLQQNPPAEDTLLKAALVLRATEGLRRLMKLKVSRMALNNLLNRGGVGDELIRKFGRLEKETELELMDIAKTANSLQPGWNQFIFQTCNEIIENEKIHSIIDNIPKDIDSISQRWQTEKILYEAADEELRIQAQKELGVL | Acts as component of the Sec62/63 complex which is involved in SRP-independent post-translational translocation across the endoplasmic reticulum (ER) and functions together with the Sec61 complex and bip1 in a channel-forming translocon complex. A cycle of assembly and disassembly of Sec62/63 complex from sec61 may gov... |
Q9UUA9 | TSR2_SCHPO | Pre-rRNA-processing protein tsr2 | MFDDPSKRLTYFEYAVGVLLCSWPVMKQAVEEEWADVDTADKRDWMAGVLVDYITVTSDVEAWDVEELILQVLQDEFNVGSIEDDSPYILAQDLVNVWKAACEDNYEPIREIHERLGKQLLEKEEGKEKTREESNPPVLVEDETIVDAEDGGAAQNQQEKQQGPIVDDDGFTVVQKRRR | Required for 20S pre-rRNA processing. |
Q9UUB0 | RT17_SCHPO | Small ribosomal subunit protein uS17m (37S ribosomal protein S17, mitochondrial) | MKLNYVGIVISRAMPKTAKVRVAKEKFHPVVKKYVTQYQNYMVQDDLNCNVGDAVTIQPCRPRSATKRFEIIKILSTANRMSPASEISKE | Component of the mitochondrial ribosome (mitoribosome), a dedicated translation machinery responsible for the synthesis of mitochondrial genome-encoded proteins, including at least some of the essential transmembrane subunits of the mitochondrial respiratory chain. The mitoribosomes are attached to the mitochondrial in... |
Q9UUC8 | RM51_SCHPO | Large ribosomal subunit protein mL43 (54S ribosomal protein L51, mitochondrial) | MMIEIIPKISIPKNGLGSFTRPCRRIEFSYCNWGGSSKGMKEFLSTKLESLAKESQDVEFHVTNRQGKHPLIRAYYNTGREKVICTRKMSASSIFQKAILCRDSDGLKPRLIKYPVESTNPSVRGIWSPFSDQAKPHEIYKKKSP | Component of the mitochondrial ribosome (mitoribosome), a dedicated translation machinery responsible for the synthesis of mitochondrial genome-encoded proteins, including at least some of the essential transmembrane subunits of the mitochondrial respiratory chain. The mitoribosomes are attached to the mitochondrial in... |
Q9UUD4 | MU124_SCHPO | Meiotically up-regulated gene 124 protein | MRLQSLSSVAIAETRRQIILTIINSLVYLVNFISCPSIHSIPFHISTHLTSCQANISLLKIVGLHCPFHRRGIASLSVCVALHWIAFSCSVMCHFAWSCALPCFVDSFFPSNFFLRTYALFTFSLQLWSGNDLQGNHSYLATPTR | Has a role in meiosis. |
Q9UUH2 | BMT2_SCHPO | 25S rRNA adenine-N(1) methyltransferase (EC 2.1.1.-) | MRPIPVKNRIGKNNIDNAKGLKGNKLIRHYHNLLKEKSRLIASSAPIEKIKNVESELENIGIDAYQRASRSGQAEGKGGDSSKILIKWIRTTPCFSYCARLKEPKDLLEIGSVSVDNKCSTCGLFRVSRIDLHSVHPLIKQQDFLERTPEEGLFTGISCSLVLNFAPPELRAKMLLHCTGLLMPPNKEQPPWLFLVLPSPCITNSRYMDEKTLHSIMIQFGFICRQKSISKKIAYYLYSYECFPMKEIDWKKKIVNDGATRNNFFIPCIL | S-adenosyl-L-methionine-dependent methyltransferase that specifically methylates the N(1) position of an adenine present in helix 65 in 25S rRNA. {ECO:0000255|HAMAP-Rule:MF_03044}. |
Q9UUH7 | GYP7_SCHPO | GTPase-activating protein gyp7 (GAP for ypt7) | MTTLESLDMPEMTEVEDDTVDIHIDNSKVALLFSKSKVFVHPTSKMKDNISGYLSLSKSKALGNSSVAGSDILLSWVPDSFLKNRPRDLSVFQNAETLSNGSIREWVEIPQHLDYSFSVRLCSIYSIIFRPPRYGWNYGSIVINLRDSGESLPPLFFHDDECISTIEYGKQITRDRFDPFDESGNMFWGGTHLLMQLKKYASLEQSSHESQLYLVNPSPEDTVAFQSVELQKVISNNRLNSSSTPPTPRSSSSIFNPFRRALHDLSFTVLERFSRVTNYGKSEVDRLMEHKVTKSILPHLPRELQVLLESKRVQKLTEEY... | Most effectively accelerates the intrinsic GTPase activity of ypt7. |
Q9UUJ5 | RM25_SCHPO | Large ribosomal subunit protein mL59 (54S ribosomal protein L25, mitochondrial) | MPVFTKEALERLPIQLGNFFKKFPPENPNAWTTNPNRQNPFLATRNPQNGLVINPYYSNRRQAEIYKEARLQNLDNLLPQQMSWQKDSTRHILKGLLNPKGKISERKRDEILENRRLKLSESLKKTSKFKNERQKASKIAKPSPF | Component of the mitochondrial ribosome (mitoribosome), a dedicated translation machinery responsible for the synthesis of mitochondrial genome-encoded proteins, including at least some of the essential transmembrane subunits of the mitochondrial respiratory chain. The mitoribosomes are attached to the mitochondrial in... |
Q9UV33 | H1_ASCIM | Histone H1 | MAAATASAAATPAKKAAPKKPAAAPEHPSYKEMLTKAITELKERNGSSRQAIKKFIQSNFKVKDNFDVQFNQALRRGVEKGEFVQPKGPSGTVKLAKKEKAAAAPKKPAAKKAAAPKKDAAPKKAAAPKKAAAPKSAAAKKKLLDAKKAAAKKPAAKKAAAPKKVAAPVEKPAPVKTTTTKSGRVTKASTTSKPAPKKKAAAPKKAATPAKSS | Could act as an H1-type linker histone. |
Q9UVF3 | ACT_YARLI | Actin (EC 3.6.4.-) | MEDETVALVIDNGSGMCKAGFAGDDAPRAVFPSIVGRPRHQGVMVGMGQKDSYVGDEAQSKRGILTLRYPIEHGIVTNWDDMEKIWHHTFYNELRVAPEEHPVLLTEAPINPKSNREKMTQIFFETFNAPAFYVSIQAVLSLYASGRVTGIVLDSGDGVTHVVPIYSGFSLPHAIMRLDMAGRDLTDYLMKILSERGYSFTNSAEREIVRDIKEKLCYVALDFEQELQTASQSSSLEKSYELPDGRVITIGNERFRAPEALFHPSMLGLEAAGIHETTFNSIMKCDVDVRKDLYGNIVMSGGTTMYPGIAERMHKEISAL... | Actins are highly conserved proteins that are involved in various types of cell motility and are ubiquitously expressed in all eukaryotic cells. |
Q9UVF5 | PALF_YARLI | pH-response regulator protein palF/RIM8 | MKSAFNKLRPNFWSRLTPSSDGDYFFVELEDAHRTWHPGDTVHGNVILVLYKPQRISSVDLSFAGNVVVKSALVKGKGSRSVLFEQKLRLHGTPTAGSNSNTTPSSGNHNSHVSNSATNSNRNSGSHMSTRTSNRNSNSHVASNTPSMSTSPTSTSSGVAATADTTTTMDTNTSQASSTAPDTLNPSSSTELSRTATRQSSDGSIWRSVGSSTPGAASGGVADMMMNSVTTEPVLSSRMSMHTTNSHLSQMSRESHVTTASRESHMSRESNTSTSSTSEELEIGEHRFAFILEIPQKGLFNSLEFERGSISYVITAVAKR... | Required for the proteolytic cleavage of the transcription factor RIM101 in response to alkaline ambient pH. |
Q9UVF6 | PALH_YARLI | pH-response regulator protein palH/RIM21 | MHSDAPTPVANELSEVSHLAEGDNASFSAGNFTVLQLPSDPSHCIDYAIPAGTLVIVDPNNPDNNRTVKLQAPAVFRPQCALGGTRAPAPRPEESFPDWSEYQKYHHNDRRDPFYGSVTPIAYTIAASTVTAWMLLIILFLSRKPSPLFQKIAVLITAVSLTVFLAQATDTLESQYNEGYQNAYELRHKIMGGWAFRILQVITCVITWLARLQVVIRLFDVPKINTRLAVVGSTLIFTNATIWACLNLIPPWSQYVRNAKSVLPVFGALCSLLLEVFYLVVVVIYSISKRKYAYSRTSIVMAAISWLAMILPMVFIVFDI... | Required for the proteolytic cleavage of the transcription factor RIM101 in response to alkaline ambient pH. |
Q9UVJ4 | RL10A_CANAL | Large ribosomal subunit protein uL1 (60S ribosomal protein L10a) | MSKITSSGVRENVHKLLEYSTETKKRNFLETVELQVGLKNYDPQRDKRFSGTLKLPQVPRPNMTICIFGDAFDVDRAKSLGVDAMSVDDLKKLNKNKKLIKKLAKKYNAFIASEVLIKQIPRLLGPTLSKAGKFPTPVSHNDDLYSKVTDVKSTIKFQLKKVLCLAVAVGNVDMEEDVLVNQIMMAANFLVSLLKKNWQNVGSLVIKSTMGPSFRIY | Component of the ribosome, a large ribonucleoprotein complex responsible for the synthesis of proteins in the cell. The small ribosomal subunit (SSU) binds messenger RNAs (mRNAs) and translates the encoded message by selecting cognate aminoacyl-transfer RNA (tRNA) molecules. The large subunit (LSU) contains the ribosom... |
Q9UVW9 | ACTG_ACRCH | Actin, gamma (EC 3.6.4.-) | MEEEVAALVIDNGSGMCKAGFAGDDAPRAVFPSIVGRPRHHGIMIGMGQKDSYVGDEAQSKRGILTLRYPIEHGVVTNWDDMEKIWHHTFYNELRVAPEEHPVLLTEAPINPKSNREKMTQIVFETFNAPAFYVSIQAVLSLYASGRTTGIVLDSGDGVTHVVPIYEGFALPHAIARVDMAGRDLTDYLMKILAERGYTFSTTAEREIVRDIKEKLCYVALDFEQEIQTAAQSSSLEKSYELPDGQVITIGNERFRAPEALFQPSVLGLESGGIHVTTFNSIMKCDVDVRKDLYGNIVMSGGTTMYPGLSDRMQKEITAL... | Actins are highly conserved proteins that are involved in various types of cell motility and are ubiquitously expressed in all eukaryotic cells. |
Q9UVX4 | ACT_COPC7 | Actin (EC 3.6.4.-) | MEDEVAALVIDNGSGMCKAGFAGDDAPRAVFPSIVGRPRHQGVMVGMGQKDSYVGDEAQSKRGILTLKYPIEHGIVTNWDDMEKIWHHTFYNELRVAPEEHPVLLTEAPLNPKANREKMTQIMFETFNAPAFYVAIQAVLSLYASGRTTGIVLDSGDGVTHTVPIYEGFALPHAILRLDLAGRDLTDYLIKCLGERGYPFTTTAEREIVRDIKEKLCYVALDFEQEMQTAAQSSSLEKSYELPDGQVITIGNERFRAPEALFQPAFLGLEAAGIHETTYNSIFKCDLDIRRDLYGNVVLSGGTTMFSGIADRMQKELLAL... | Actins are highly conserved proteins that are involved in various types of cell motility and are ubiquitously expressed in all eukaryotic cells. |
Q9UVZ8 | ACT_CANDC | Actin (EC 3.6.4.-) | MDGEEVAALVIDNGSGMCKAGFAGDDAPRAVFPSLVGRPRHQGIMVGMGQKDSYVGDEAQSKRGILTLRYPIEHGIVSNWDDMEKIWHHTFYNELRVAPEEHPVLLTEAPMNPKSNREKMTQIMFETFNVPAFYVSIQAVLSLYSSGRTTGIVLDSGDGVTHVVPIYAGFSLPHGILRIDLAGRDLTNHLSKILSERGYSFTTSAEREIVRDIKERLCYVALDFEQEMQTSSQSSAIEKSYELPDGQVITIGNERFRAPEALFRPADLGLEAAGIDQTTFNSIMKCDMDVRKELYGNIVMSGGTTMFPGIAERMQKEITA... | Actins are highly conserved proteins that are involved in various types of cell motility and are ubiquitously expressed in all eukaryotic cells. |
Q9UW02 | THIO_COPCM | Thioredoxin (Trx) (allergen Cop c 2) | MVQVISNLDEFNKLTNSGKIIIIDFWATWCGPCRVISPIFEKFSEKYGANNIVFAKVDVDTASDISEEAKIRAMPTFQVYKDGQKIDELVGANPTALESLVQKSLA | Participates in various redox reactions through the reversible oxidation of its active center dithiol to a disulfide and catalyzes dithiol-disulfide exchange reactions. |
Q9UW19 | MTAL1_CANAL | Mating-type-like protein ALPHA1 (MTLalpha1 protein) | MGNKKKTRKTVPKEFISLFRVHSGRDAPRRDTREVQKSKKHGFRFTSLPDLPVASNALQELLLEYGLLNDIKWDSKGLKASKNKKTKLKPINSFIAFRSFYSRTISNPEHQRELSSKLADVWTQESNQEVWKQYTQSYNNYLLLPDAKLNFVDWLCEALDYTIDNTTPQIEDISLTSYNQLLSGTIEDVYIMK | Mating type proteins are sequence specific DNA-binding proteins that act as master switches in yeast differentiation by controlling gene expression in a cell type-specific fashion. Transcriptional activator that induces the transcription of alpha-specific mating genes. |
Q9UWF0 | CALM_MAGO7 | Calmodulin (CaM) | MADSLTEEQVSEFKEAFSLFDKDGDGQITTKELGTVMRSLGQNPSESELQDMINEVDADNNGTIDFPEFLTMMARKMKDTDSEEEIREAFKVFDRDNNGFISAAELRHVMTSIGEKLTDDEVDEMIREADQDGDGRIDYNEFVQLMMQK | Calmodulin mediates the control of a large number of enzymes, ion channels and other proteins by Ca(2+). Among the enzymes to be stimulated by the calmodulin-Ca(2+) complex are a number of protein kinases and phosphatases (By similarity). |
Q9UWG2 | RL3_METVA | Large ribosomal subunit protein uL3 (50S ribosomal protein L3) | MGMKKNRPRRGSLAFSPRKRAKKLVPKIRSWPADKKVGLQAFPVYKAGTTHALLVENNPKSPNNGQEVFSPVTVLETPEITVAGIRAYGKTTKGLKALTEVWAKQQDKELGRKLTVTKKEEIKTVESLDAVLEKTVDLRVIVHTNPKTTGIPKKKPEVVEIRVGGSSVAEKLAYAKDILGKTLSINDVFETGEFIDTLAVTKGKGFQGPVKRWGVKIQFGKHQRKGVGRQTGSIGPWRPKRVMWTVPLAGQMGFHQRTEYNKRILKLGSEGAEITPKGGFLNYGAVKNGYVVVKGTVQGPAKRLVVLRGAVRPAEDKFGL... | One of the primary rRNA binding proteins, it binds directly near the 3'-end of the 23S rRNA, where it nucleates assembly of the 50S subunit. {ECO:0000255|HAMAP-Rule:MF_01325}. |
Q9UWG6 | FLA1_SACSH | 31/33 kDa flagellin | LAGLDTAIILIAFIITASVLAYV | Flagellin is the subunit protein which polymerizes to form the filaments of archaeal flagella. |
Q9UWN6 | TF2B_SULAC | Transcription initiation factor IIB (TFIIB) | MVEQSKVPSSSLCPPDKIIFDEERGEYICTETGEVIEERIIDQGPEWRAFTPEEKEKRSRVGGPLNQTIHDMGISTVIDWKDKDAMGRSLDPKRRLEVLRWRKWQIRTRIQSSIDRNLAQAMNELERIGNLLNLPKAVKDEAALIYRKAVEKGLVRGRSIESVVAASIYAACRRMKMARTLDEIAQFTKANRKEVARCYRLILRELDIEVPVSDPKDYVTRIGTLLSLSGITMKHAAEIIEKAKNSGLTAGKDPAGLAAAAIYIAALLNDERRTQKEIAQVAGVTEVTVRNRYKELTQELKIQIPSQ | Stabilizes TBP binding to an archaeal box-A promoter. Also responsible for recruiting RNA polymerase II to the pre-initiation complex (DNA-TBP-TFIIB). {ECO:0000255|HAMAP-Rule:MF_00383}. |
Q9UWN7 | TBP_SULAC | TATA-box-binding protein (Box A-binding protein) (BAP) (TATA sequence-binding protein) (TBP) (TATA-box factor) | MIPDEIPYKAVVNIENIVATVTLDQTLDLYAMERSVPNVEYDPDQFPGLIFRLESPKITSLIFKSGKMVVTGAKSTDELIKAVKRIIKTLKKYGMQLTGKPKIQIQNIVASANLHVIVNLDKAAFLLENNMYEPEQFPGLIYRMDEPRVVLLIFSSGKMVITGAKREDEVHKAVKKIFDKLVELDCVKPVEEEELEF | General factor that plays a role in the activation of archaeal genes transcribed by RNA polymerase. Binds specifically to the TATA box promoter element which lies close to the position of transcription initiation (By similarity). |
Q9UWR5 | RADA_PYRIL | DNA repair and recombination protein RadA | MSSKKRKDAEVAQARVEITPDLDVEELEGVGRVTGAKLKERGFFTVRDVAFASVKELAEIVGNEERAQQIVEAARKMLGLHSFVSALEVYERRKKIRRISTGVRALDELLGGGIETRAVTEVAGEFGSGKTQLCHQLAVMVQLPEERGGLGAKAIYIDTENTFRPERIMQIAKARGLDPDQALNNIFYARAYSSDHQMILVDQAKSIIRQHNVALLIVDSVIAHFRSEFPGRENLAERQQKLNKHVADLLRLADAYDVAVVITNQVMAQPDVFFGNPLRPAGGNILAHGATYRLWLRKSKENIRIAKIFDSPYHPEGEVS... | Involved in DNA repair and in homologous recombination. Binds and assemble on single-stranded DNA to form a nucleoprotein filament. Hydrolyzes ATP in a ssDNA-dependent manner and promotes DNA strand exchange between homologous DNA molecules. |
Q9UWR8 | RL1_PYRAB | Large ribosomal subunit protein uL1 (50S ribosomal protein L1) | MSRMPFDRQKIVEAVKEAKARAKPRNFTQSVEVAVNLKDIDLKRPENRFKLEVVLPHGRGKDVKIAVIADGAVAEAARRLGLDVISSAELEEIAQSPRQARKLAKKYDFFIAEAPLMPKIGRYLGKYLGPRNKMPVVVPPTMSNLEPIVEKLKKTVRIQLKNNPVVHAPVGTEKMSDEEIAENIETVLNAIIGKLERGESQIKSVYVKTTMGPAVKVKG | Binds directly to 23S rRNA. Probably involved in E site tRNA release. {ECO:0000255|HAMAP-Rule:MF_01318}. Protein L1 is also a translational repressor protein, it controls the translation of its operon by binding to its mRNA. {ECO:0000255|HAMAP-Rule:MF_01318}. |
Q9UWR9 | PCNA_THEFM | DNA polymerase sliding clamp (Proliferating cell nuclear antigen homolog) (PCNA) (Tfu PCNA) | MPFEIVFDGAKEFADLIATASNLIDEAAFKVTDEGISMRAMDPSRVVLIDLNLPESIFSKYEVEEEETIGINMDHFKKILKRGKGKDTLILKKGDENFLEITFEGTAKRTFRLPLIDVEELELDLPELPFTAKVVLLGEVLKEAVKDASLVSDAMKFIAKENEFSMRAEGETNEVEIKLTLEDEGLLDIEVEEETKSAYGISYLADMVKGIGKADEVTIRFGNEMPLQMDYFIRDEGKLTFLLAPRVED | Sliding clamp subunit that acts as a moving platform for DNA processing. Responsible for tethering the catalytic subunit of DNA polymerase and other proteins to DNA during high-speed replication. {ECO:0000255|HAMAP-Rule:MF_00317}. |
Q9UWW3 | VATI_SACS2 | V-type ATP synthase subunit I (V-ATPase subunit I) | MLLPENMVRLQIISDKSAIDPIITKLLKLGMFQPEDPLYPLGNERIEDARRLITAVQDHVSKLKIIMELGGLVIEPLGSIKVSSWIKAAQDVSEEASKLEERYKELLEEIGRLRSEKDLYQQQLKELEPIKSITVELSKLYSLELFDVILAQVDEDKLRLINQIIGDSNFVYYTRFGEERYIVLIIAEKNINVDKKLREAGVRRYELQEGKSPFQLYNEILERINQINIILERTREELAKKVKTEENYIKNVYGKLLTVRDALNIMNKARVSEYYLQIEGYFPEKHVKKVQNEINNLAFMDYIRPRRYGEKEEPPTLVEL... | Produces ATP from ADP in the presence of a proton gradient across the membrane. |
Q9UWW5 | VATE_SACS2 | V-type ATP synthase subunit E (V-ATPase subunit E) | MDFEQLLDKSLNKVREEIKTELSKSLDEAIKLLNEGHNKIVQEYSQRINELIVKTKEEIEGEKARLEVENKRTLLVEKEYWINKVYERVLGKIGEVVKTKEYKDAIENIISKEIKEIREEKVTIYCSPNDKLMIEKIVGNNKNVTVKTDEKMLGGIKIYFERSGLTRDFSLKLILDQVFDSMRGKISDMLFGGK | Produces ATP from ADP in the presence of a proton gradient across the membrane. |
Q9UWW8 | VATB_SACS2 | V-type ATP synthase beta chain (V-ATPase subunit B) | MLSVREFSNISMIKGPLVYVQGVTDASYNELVEIEMPNGERRRGLVIDSQMGIAIVQVFEGTTGVSPTGTKIRMLGRGLEVKISEEMLGRIFNPLGDSLDNGPPVIKGEKRDINGSPLNPAAREYPEEFIQTGISAIDGLNALLRGQKLPIFSGSGLPANMLAAQIAKQATVRGEESNFAVVFAAIGARYDDALFFRKFFEETGAINRVAMIVSLANEPPVMKTLTPKTALTLAEYLAFEQDMHVLAILIDMTNYCEALREISAAREEVPGRGGYPGYMYTDLATIYERAGKVIGKKGSITQMPILTMPNDDITHPIPDL... | Produces ATP from ADP in the presence of a proton gradient across the membrane. The archaeal beta chain is a regulatory subunit. |
Q9UWW9 | VATD_SACS2 | V-type ATP synthase subunit D (V-ATPase subunit D) | MSQKVLPTKINLIQFRRQLRLITVIKRLLENKREVLLLYLRTYASQYEKIYNEVNEEMKKVYESYLQAVASEGISNIEEMALSQKPSLEVNSAIKVIFGVKVPTIRLDKSTIPAKPFSDVETSPYLSESYEEMTEALNKIIELVELESTIRSLVSELRKTQRLINSIDNYILPFYRGSIKFIKQILEDRQREEFSRLKIIRRILQRRRESGSR | Produces ATP from ADP in the presence of a proton gradient across the membrane. |
Q9UWX2 | SYP_SACS2 | Proline--tRNA ligase (EC 6.1.1.15) (Prolyl-tRNA synthetase) (ProRS) | MQITREKWSKNFSEWFDWVLREGEFYDYGRYPIKGMGVWMPYGFKLRQNIIGIIRNFLDSTGHEEVLFPLLIPEDLLRRESTHIKGFEEEVFWVTKGGSTDLDVKLALRPTSEVAITTMENLWLKSYKQLPKKYYQIVSVFRYETKATRPMIRLREITTFKEAHTVHETYDDAQKQVEEAIEIYKKIFDTLTIPYVLSERPEWDRFAGALHTYAFDTIMPDGRAMQIGTVHHLGQNFSKALDFKIQKKDGSLDYPHQTSYGISDRAVASVIAIHGDDHGPVLPPSVAPIKVVVIPIPAKNEEETQQVMKYSIEICEMFNK... | Catalyzes the attachment of proline to tRNA(Pro) in a two-step reaction: proline is first activated by ATP to form Pro-AMP and then transferred to the acceptor end of tRNA(Pro). {ECO:0000255|HAMAP-Rule:MF_01571}. |
Q9UX07 | PYRI_SACS2 | Aspartate carbamoyltransferase regulatory chain | MISSSKRDELIVSKIRNGTVIDHIPAGRALAVLRILGIRGSEGYRVALVMNVESKKIGRKDIVKIEDRVIDEKEASLITLIAPSATINIIRDYVVTEKRHLEVPKQIRGLIKCPNPQCITNNDVEAESRFITISIKPLKLKCKYCEMYITEDDVIRQIL | Involved in allosteric regulation of aspartate carbamoyltransferase. |
Q9UX16 | TYW3_SACS2 | tRNA(Phe) 7-((3-amino-3-carboxypropyl)-4-demethylwyosine(37)-N(4))-methyltransferase (EC 2.1.1.282) (tRNA wyosine derivatives biosynthesis protein Taw3) | MLVWEELREKALNKIYHDKEIGYLDPDILGFLLAFYRNRNDVYTQSSCSGRITIVDAEMPWDRKNSTIIFKNHLRITEQDLEDVLSKNQVRRLWLIVQGPIIHIYAKNIETGWDILKIAREAGFKHSGILATNQKGVLVELRTGIRMVHLLRESNTERVDKDKIKTLVNVCNEVLARGKQKMNLLKDLLSSSSNNSMELGKNSKLKTPI | S-adenosyl-L-methionine-dependent methyltransferase that acts as a component of the wyosine derivatives biosynthesis pathway. Probably methylates N-4 position of wybutosine-86 to produce wybutosine-72. {ECO:0000255|HAMAP-Rule:MF_00266}. |
Q9UX49 | NIKR_SACS2 | Putative nickel-responsive regulator | MSAEKISISLPKELYRELEDFIIRKGIPDRSKIFQIALRNYLDENRDGNEIIYGIINLVYDHEEASEALTEIQHEYNDSIISTLHLHVSEKICIEAIAVKGEKRKLVELNNKLGQIRGILKARLLISFPYEKT | Transcriptional regulator. {ECO:0000255|HAMAP-Rule:MF_00476}. |
Q9UX78 | AMZA_SACS2 | Archaemetzincin (EC 3.4.-.-) | MTEMKILIVTLTYIEKSIIDEIVNNLSSYGLEVDILLDSRKYLPISAFNWERLQYDAEKVLSFLKSIHDFNYDSIIFLADSDGYIDGYNFVFGLTIDNFAIIFLHRLREEFYNRKPDLDLFMKRVVKEVTHEVGHTLGLSHCNTTGCVMNFSNSVEDVDKKQAKFCKNCAHKIEKLSKYLQQK | Probable zinc metalloprotease whose natural substrate is unknown. {ECO:0000255|HAMAP-Rule:MF_01842}. |
Q9UX79 | ARCH_SACS2 | Protein archease | MRQFEFFEHTADVGIKSYGRSLEEAFSNAALGVFEVITDTSKVRPVEYREIYLNGYDLENLLYKWIEELLYYYDSELMIFSKFDLMIDQDSITLEGKAWGERFNDKIHERRTVVKAMTYHQLSIEKTESGYVITFVVDI | Activates the tRNA-splicing ligase complex by facilitating the enzymatic turnover of catalytic subunit RtcB. Acts by promoting the guanylylation of RtcB, a key intermediate step in tRNA ligation. Can also alter the NTP specificity of RtcB such that ATP, dGTP or ITP is used efficiently (By similarity). |
Q9UX84 | SECY_SACS2 | Protein translocase subunit SecY (Protein transport protein SEC61 subunit alpha homolog) | MSFIDSLATLGQYLPAVTKPKEKPSLGQKLVWSLVAVIIYLIMASTPLYGITSASFFKNLILEQIIFASTTGTLAQLGIGPIITAGLIMQILAGSKLISIDLNDPDDRVKFTEAQKGLAFIFILVESALFGYVLARTSTTINASILFIAGIVIAQLIVATYLILLLDELIQKGWGLGSGVSLFILAGVMKIMFWDMFGIASVSSQNLPIGFFPALFTALASHSDVLNLIVNTSTKNLFQPDLVGLVTTIALIIITIYLTTMTIEIPVTSQKLRGIRRTIPLNFLYVSSIPVIFVAVLGSDIQLFASLASYVSPSASNILN... | The central subunit of the protein translocation channel SecYEG. Consists of two halves formed by TMs 1-5 and 6-10. These two domains form a lateral gate at the front which open onto the bilayer between TMs 2 and 7, and are clamped together by SecE at the back. The channel is closed by both a pore ring composed of hydr... |
Q9UX85 | RL15_SACS2 | Large ribosomal subunit protein uL15 (50S ribosomal protein L15) | MVVRREKKSRKMRGSRTMGWGIRGQHRDRGSQGGRQIGMHKEKWSWLVKYGKGWYGKHGFRNPTTKLTSAISLRKLNELLESGYIKIKEMDGKKIVDLNELGYNKLLGGGSISIPVTIKVGKATNKAIQKVKEMGGEVILSPTE | Binds to the 23S rRNA. {ECO:0000255|HAMAP-Rule:MF_01341}. |
Q9UX87 | RS5_SACS2 | Small ribosomal subunit protein uS5 (30S ribosomal protein S5) | MAEEVPSLNIEEWKPRTSIGSLVKEGKISSIKELFDRNLPITEPEIVDVLLPKLKYEVVDIKVVQKQTDAGEISRYKVLVIMGNMDGYVSIGTGKAKQLRVAIQKAIRDAKMNIIPVRRGCGSWQCTCGEPHSLPFKVVGKAGSVEVDLLPAPKGTGLVVGSVLKTLLTYAGIKDAWSTTKGETRTTENFVRAGYSALYNTYKFVTLQDWVRKR | With S4 and S12 plays an important role in translational accuracy. {ECO:0000255|HAMAP-Rule:MF_01307}. |
Q9UX88 | RL18_SACS2 | Large ribosomal subunit protein uL18 (50S ribosomal protein L18) | MNKLANGPNYKVKPRRRREGKTNYYKRYVYVISKQTRFIVRITNKYVIVQIAKIDPKGDIMIASAHSAELAKKFGWKGDENNTPAAYLTGYLAGLRAIKRGVTECVADIGLHVPSKGNRVFYVIKGAIDAGLKIPIGDISIENDRIKGEHIAKYAEKLKSENSDLYSKLFSRYLQRGLNPENLPSHFEEILNKIKSSGG | This is one of the proteins that bind and probably mediate the attachment of the 5S RNA into the large ribosomal subunit, where it forms part of the central protuberance. {ECO:0000255|HAMAP-Rule:MF_01337}. |
Q9UX89 | RL19E_SACS2 | Large ribosomal subunit protein eL19 (50S ribosomal protein L19e) | MTNLKAQKRLAASIAGVGINRIKVVEDYIEDVQSSLTRDEIRNLIKDGKIIVLKKVGISGGRLKERRKKRSLKSEGKKSGSRKGKKGARANSKQMWVKRVRKIRAYLKWLRDHKVIDRHTYRELYLKTKGGNYKGVSDVRNVLIQMGKIKG | Binds to the 23S rRNA. {ECO:0000255|HAMAP-Rule:MF_01475}. |
Q9UX91 | RL6_SACS2 | Large ribosomal subunit protein uL6 (50S ribosomal protein L6) | MQIVILREEIEIPKNVVVDLKGSIIKIKGPKGEVVKDFSFAKGIQISLDGNKIVLETTFANRRKKAVFYSIVSHIKNMITGVTKGYRYYLKIIYTHFPTSVKVVGNEVQITNLIGEKNTRRAQILEGVKVTVKGEDIVVEGPNLEAVAQTAANIESASKISGFDRRIFSDGIFIYKKEVIE | This protein binds to the 23S rRNA, and is important in its secondary structure. It is located near the subunit interface in the base of the L7/L12 stalk, and near the tRNA binding site of the peptidyltransferase center. {ECO:0000255|HAMAP-Rule:MF_01365}. |
Q9UX92 | RS8_SACS2 | Small ribosomal subunit protein uS8 (30S ribosomal protein S8) | MVFVNPLANALTSIYNNEMRRNKQAIIMPASKLVINVLRVMQKEGYVGEFEYIDDGRWGKITVQLLGRVNKCGPITPRYPLSYRQMIALPDYVRRYLPSKEIGIIIVSTSKGVMSHKEAARLRIGGVALGYVY | One of the primary rRNA binding proteins, it binds directly to 16S rRNA central domain where it helps coordinate assembly of the platform of the 30S subunit. {ECO:0000255|HAMAP-Rule:MF_01302}. |
Q9UX93 | RL5_SACS2 | Large ribosomal subunit protein uL5 (50S ribosomal protein L5) | MIKMAESTLPLSQNPMRKVKLSKVTVNIGLGESGDRLQKAYQLLQELTGAKPVYTISKKTIREFGIRKGQEIGVKVTLRGAQAEEFLRKVLEAIGYRLKKSSFDDYGNVSFGIAEHVILPGARYDPEIGIFGMDIAITLERAGYRISRRRRKKAKIPKRHRVTKEEAMEFLRNNFNVQLVEG | This is one of the proteins that bind and probably mediate the attachment of the 5S RNA into the large ribosomal subunit, where it forms part of the central protuberance. In the 70S ribosome it contacts protein S13 of the 30S subunit (bridge B1b), connecting the 2 subunits this bridge is implicated in subunit movement.... |
Q9UX95 | RL24_SACS2 | Large ribosomal subunit protein uL24 (50S ribosomal protein L24) | MVSLKPSKQRKLLYTLPLHQRKKLLVAKVSDDIASQYGIKRIRVRKGDTVRVMRGGNSGKEGKVVEVNTKTGRLAIEGITRKKVDGTPVYVWIHASKVMITKLDLSDPRRREKLEKSKK | One of two assembly initiator proteins, it binds directly to the 5'-end of the 23S rRNA, where it nucleates assembly of the 50S subunit. {ECO:0000255|HAMAP-Rule:MF_01326}. Located at the polypeptide exit tunnel on the outside of the subunit. {ECO:0000255|HAMAP-Rule:MF_01326}. |
Q9UX98 | RS17_SACS2 | Small ribosomal subunit protein uS17 (30S ribosomal protein S17) | MVSKGKTVKDPGIPNITIPEKVCEDEDCPYHGSLRVRGITLEGVIVKYRGTKAAVIERQYLYYDSKYKRYERRRSRIHAHVPPCINVREGDKVIIGECRPLSKSISFVVLGKVS | One of the primary rRNA binding proteins, it binds specifically to the 5'-end of 16S ribosomal RNA. {ECO:0000255|HAMAP-Rule:MF_01345}. |
Q9UXA0 | RS3_SACS2 | Small ribosomal subunit protein uS3 (30S ribosomal protein S3) | MPNIKRYFLEKSIVKVKIDEYLAKQYYNAEYAGVEVLKTPIGTRVIIYAGRPSMIIGRGGRNIKQLAQIFEKVFGLENPQITITNVENPELNARVMAFRLAIALEKGYHFRRAAFISMRRIMNAGALGAEIIISGKLTTERARYEKLKEGIVYKSGQQLEKMIDRAIAIAMLKPGIFGVEVVITKPLKIEDKINLKESPSVPQEVSVTNVTFIEESSQKSEEKSEGEKE | Binds the lower part of the 30S subunit head. {ECO:0000255|HAMAP-Rule:MF_01309}. |
Q9UXA2 | RL22_SACS2 | Large ribosomal subunit protein uL22 (50S ribosomal protein L22) | MASWKYPQLDVDELKIAKAVIRDVPESIRDLYNVCKAIRGMYLNDAKDFLNRVLEEKEALPFWRYNKGASHKSNISAKWKIKAGRYPKKAIRQVLKVLENAEANATNKGLDVDKLIIRHIAAHKGITLQRYMPRAFGRATAKYRRTSNIEVILEEVE | This protein binds specifically to 23S rRNA. It makes multiple contacts with different domains of the 23S rRNA in the assembled 50S subunit and ribosome. {ECO:0000255|HAMAP-Rule:MF_01331}. The globular domain of the protein is located near the polypeptide exit tunnel on the outside of the subunit, while an extended bet... |
Q9UXA3 | RS19_SACS2 | Small ribosomal subunit protein uS19 (30S ribosomal protein S19) | MSLEIPPEWKNFKYRGKSIDELLNMPMDEFIKLLPSRQRRSLKRGFTDAQRHLLEKVRKYRREGKFNKTIKTHVRNLVILPELIGLKMAVYNGKEFVEFTVTPEMIGHYLGEYSITTKKVEHGEPGLKATRSSLFLAMKG | Protein S19 forms a complex with S13 that binds strongly to the 16S ribosomal RNA. |
Q9UXA5 | RL2_SACS2 | Large ribosomal subunit protein uL2 (50S ribosomal protein L2) | MGKNLLQQRAGKGSPTFRNPGWLRIGKVRYPNIFGHFIGKVIDIVHNPGMNAPVALVKLENGTKFLMQAIQGLVVNQKIEFGKGSPIANGNVIEIGDAPEGTIVCNVEENFGDGGKYARSAGSYAVVVGKSGDRVLIRLPSDKIKAVSNKARATVGIVAGGGVIEKPLLKAGANYWKYKVKAKKWPIVRGVAMNVVDHPHGGGLHQSVSRPSTVSRNAPPGRKVGHIAARRTGRKEGK | One of the primary rRNA binding proteins. Required for association of the 30S and 50S subunits to form the 70S ribosome, for tRNA binding and peptide bond formation. It has been suggested to have peptidyltransferase activity this is somewhat controversial. Makes several contacts with the 16S rRNA in the 70S ribosome. {... |
Q9UXA6 | RL4_SACS2 | Large ribosomal subunit protein uL4 (50S ribosomal protein L4) | MYLELVKKKSDILDKDGNRIKEVELPIIFSFPVRKDLIRRVFIAEFTHSLQPKGRDPNAGKRTSAESFGINLGMARVPRVKNSGEAALAPNTVGGRLAFPPSVNKKLAEEANVKEKRLAVISALSATADIAFVRARGHVFKDSVRFPIVVTDDIVNLKTTSEVEEFLKKIGVYDDVERVKERIRIRAGKGKMRGRKYKEPIGPLIIVHDSNSPIIKAARNLAGVDVVNAKDVSVIHLAPGAHPGRLTIYTESSIKILDERLSKRVVS | One of the primary rRNA binding proteins, this protein initially binds near the 5'-end of the 23S rRNA. It is important during the early stages of 50S assembly. It makes multiple contacts with different domains of the 23S rRNA in the assembled 50S subunit and ribosome. {ECO:0000255|HAMAP-Rule:MF_01328}. Forms part of t... |
Q9UXA8 | RL3_SACS2 | Large ribosomal subunit protein uL3 (50S ribosomal protein L3) | MGHRKLASPRRGSAGLRPRKRSSELLPTPRTWPQINSQNPKLLGFVGYKVGMTHVFMIDDWPNSPTNGKEIYMPVTVLEVPPIIPLALRAYAIDGKGEPNVITEYWSSSSLQFLDITRRIHSISSFLKDDESKKKFDERFNTKLDLIKSNLDRIVYFRLLVSTQPRKIPSLGKKAPDLVEIQIGGGEKKSQLDYALNILGKEITIRDVFKEGQLIDVVGVTKGKGFAGVIKRYSVVELPRWHKHRKGSRKIGTRGPSLGTPSYTPQPGQLGFHRRTEYNKRIIKIGDEPKEINPAGGFVRYGIVRNTYVLLEGSILGSKK... | One of the primary rRNA binding proteins, it binds directly near the 3'-end of the 23S rRNA, where it nucleates assembly of the 50S subunit. {ECO:0000255|HAMAP-Rule:MF_01325}. |
Q9UXB8 | PFDB_SACS2 | Prefoldin subunit beta (GimC subunit beta) | MAEKLPPEVQAQLAKFQQLKDQLDRLLLEKSTIENELREINKVLEELSVLNADATIYKIVGNLLVKSDKTSVEKELNDRKELLELRSRTYQKQESILRKQLEDLQAKINDMLSKYYPQGGQTGIKA | Molecular chaperone capable of stabilizing a range of proteins. Seems to fulfill an ATP-independent, HSP70-like function in archaeal de novo protein folding (By similarity). |
Q9UXC6 | PSA_SACS2 | Proteasome subunit alpha (20S proteasome alpha subunit) (Proteasome core protein PsmA) | MAFGPAAMGYDRAITIFSPDGSLYQVDYAFEAVKKGWTAIGIKSKSSVVIASEKRKAQSLLDVDSIEKVFLIDDHVGCSFAGLASDGRVLIDYARNIALQHRLIYDEPVSIDYLTKSVADVKQMYTQHGGVRPFGVALVIAGIDKSVPKLFMTEPSGQYMPYQAVAIGQGYYTATEFLEKNYKEDLNVEETILLALKALSATLKPNEKLTPNTVEIGYASTQTGLFLKMTNEDKNMYLQKL | Component of the proteasome core, a large protease complex with broad specificity involved in protein degradation. {ECO:0000255|HAMAP-Rule:MF_00289}. |
Q9UXC7 | RNP2_SACS2 | Ribonuclease P protein component 2 (RNase P component 2) (EC 3.1.26.5) (Pop5) | MNSIQLIIDIILILWILILTVLYFKRRQLNVDIVKNKKIIRAKRYIVFYVISEYKVKGDDLERVIRNSLKDLLGSVWLNIANPKVVTYREDTQEGIISTNRVGYKAVLASLPFAKEINNNKILIVPRRTTGSLKKAKKLIGLK | Part of ribonuclease P, a protein complex that generates mature tRNA molecules by cleaving their 5'-ends. {ECO:0000255|HAMAP-Rule:MF_00755}. |
Q9UXG3 | CDPAS_SACS2 | CDP-archaeol synthase (EC 2.7.7.67) (CDP-2,3-bis-(O-geranylgeranyl)-sn-glycerol synthase) | MSIAYDLLLSILIYLPAFVANGSGPFIKRGTPIDFGKNFVDGRRLFGDGKTFEGLIVALTFGTTVGVIISKFFTAEWTLISFLESLFAMIGDMIGAFIKRRLGIPRGGRVLGLDQLDFVLGASLILVLMRVNITWYQFLFICGLAFFLHQGTNYVAYLLKIKNVPW | Catalyzes the formation of CDP-2,3-bis-(O-geranylgeranyl)-sn-glycerol (CDP-archaeol) from 2,3-bis-(O-geranylgeranyl)-sn-glycerol 1-phosphate (DGGGP) and CTP. This reaction is the third ether-bond-formation step in the biosynthesis of archaeal membrane lipids. {ECO:0000255|HAMAP-Rule:MF_01117}. |
Q9UXQ8 | EHAA_METTM | Probable [NiFe]-hydrogenase-type-3 Eha complex membrane subunit A | MIIHVTYLSGYITGIISSIIISAILGLPLAPERPARHSWTPSAIFPAPIIAMGLVAICIKLGVTGMYGGVDLGVVSGLLAALMTAYFLEDIFPRPEDL | One of the integral membrane subunits of multisubunit membrane-bound [NiFe]-hydrogenase eha. Eha is predicted to form large electron transfer complex and might catalyze energy-driven reduction of low-potential redox carriers (Potential). |
Q9UXR0 | DNAK_METTE | Chaperone protein DnaK (HSP70) (Heat shock 70 kDa protein) (Heat shock protein 70) | MGKILGIDLGTTNSCMAVMEGGEAVVIPNAEGARTTPSVVGFSKKGEKLVGQVAKRQAISNPENTVYSIKRHMGEPNYKVTLQGKHNTPQEISAMILQKLKADAEAYLGEEIKQAVITVPAYFNDAQRQATKDAGTIAGLEVLRIINEPTAASLAYGLDKGEVEQTILVYDLGGGTFDVSILEIGGGVFEVKATSGDTHLGGDDFDQRIVNYLLAEFKKTEGIDLSKDRAVLQRLTDAAEKAKIELSGVASTNINLPFLTVGPDGEPKHLDIDLTRAQFQKMTEDLLEKTLVSMRQALSDAKLTPNDIDKVILIGGATRM... | Acts as a chaperone. |
Q9UXS5 | RL10_PYRAB | Large ribosomal subunit protein uL10 (50S ribosomal protein L10) (Acidic ribosomal protein P0 homolog) | MAHVAEWKKKEVEELANLIKSYPVIALVDVSSMPAYPLSQMRRLIRENGGLLRVSRNTLIELAIKKAAQELGKPELEKLAEYIDRGAGILVTNMNPFKLYKFLQQNRQPAPAKPGAVVPKDVVIPAGPTPLAPGPIVGQMQAMGIPARIERGKVTIQKDTTVLKAGEVITPELANILNALGIQPLEVGLDVLAVYEDGIVYTPDVLAIDEQEYIDMVQKAYMHAFNLAVNIAYPTPETIEAIIQKAFLNAKAVAVEAGYITKETIQDILGRAFRAMLLLAQQLPDELLDEKTKELLSAQAQVAVAPQEVEEEKKEEEEKK... | Forms part of the ribosomal stalk, playing a central role in the interaction of the ribosome with GTP-bound translation factors. {ECO:0000255|HAMAP-Rule:MF_00280}. |
Q9UXS6 | RL12_PYRAB | Large ribosomal subunit protein P1 (50S ribosomal protein L12) | MEYVYAALLLHSVGKEINEDNLKAVLQAAGVEPDEARIKALVAALEGVNIDEVIEKAAMPVAVAAAPAAAPAEAPAEEKKEEEKKEEEKEEEVSEEEALAGLSALFG | Forms part of the ribosomal stalk, playing a central role in the interaction of the ribosome with GTP-bound translation factors. {ECO:0000255|HAMAP-Rule:MF_01478}. |
Q9UXT0 | GCSPA_PYRAB | Probable glycine dehydrogenase (decarboxylating) subunit 1 (EC 1.4.4.2) (Glycine cleavage system P-protein subunit 1) (Glycine decarboxylase subunit 1) (Glycine dehydrogenase (aminomethyl-transferring) subunit 1) | MAKHYIPNSAHKEEMLKEIGLSSIDELFADIPGKFIRDELNLPEGKSEYEVFLEMNEILGKNKTVLEMPTFLGAGTYFHYIPAHVKYLIERSEFLTAYTPYQPEISQGMLQALFEYQSLIAELVGLPVVNASMYDWGTAMAEAALMTVRLHRGKRKKFIVPRHTHPERLQVLETYAKGPGVEIETVKWNERGQVDIEDLKEKVKDAAGVYVEIPNFFGLLEEEVREIGEIAHEAGAYFVVGVDPTILGIVEAPGELGADIVVGEASYFGNPMNFGGPRAGIFAVRNDMKLIRQMPGRLIGMTKDAEGKRAFVMTLQTREQ... | The glycine cleavage system catalyzes the degradation of glycine. The P protein binds the alpha-amino group of glycine through its pyridoxal phosphate cofactor CO(2) is released and the remaining methylamine moiety is then transferred to the lipoamide cofactor of the H protein. {ECO:0000255|HAMAP-Rule:MF_00712}. |
Q9UXT1 | GCSPB_PYRAB | Probable glycine dehydrogenase (decarboxylating) subunit 2 (EC 1.4.4.2) (Glycine cleavage system P-protein subunit 2) (Glycine decarboxylase subunit 2) (Glycine dehydrogenase (aminomethyl-transferring) subunit 2) | MYRQAKWDEPLIFELSRPGRVGYTLPKPIEDVDVEIPEKLKRKSPLNLPEVSEPEVVKHYTRLSEMNYGVDSGIYPLGSCTMKYNPKINEELAGHPKVAYIHPYQDERTVQGALRIMWELEQWLKEITGMDRFTLQPAAGANGEFTGVMIIKAYHLDRGETQRNEMLVPDSAHGTNPASAAMAGFKVIEIPSNENGTVDLEALENAVSERTAGLMLTNPNTLGIFEDEIEEIAKIVHKAGGLLYYDGANLNGILGKVRPGDMGFDIVHLNLHKTFSTPHGGGGPGAGPVGVKEFLKDYLPVPLVSYDEENDRYYLDYDVP... | The glycine cleavage system catalyzes the degradation of glycine. The P protein binds the alpha-amino group of glycine through its pyridoxal phosphate cofactor CO(2) is released and the remaining methylamine moiety is then transferred to the lipoamide cofactor of the H protein. {ECO:0000255|HAMAP-Rule:MF_00713}. |
Q9UXU0 | TRKA_PYRAB | Trk system potassium uptake protein TrkA homolog (K(+)-uptake protein TrkA homolog) | MYIIIMGAGRIGTLVARMLESEGHDVAIIEMNRERAREISEYVSGLVIEGDATDQKVLENANIKNADAFAALTGRDDANILACILAKHLNPKIMTILRITDPGKKKIFEEVKELKRYFDIVVSPEDIAANYIFRTLVTPGFDRVLLPREGAEIIQFQVNEDCEVAGKPIKELNLPKDSLIIAVYDEKGNLVIPSGDTVIPKKGQVIIFAKNSALQDVKKIMEKKREE | Part of a potassium transport system. |
Q9UXU2 | VATI_PYRAB | V-type ATP synthase subunit I (V-ATPase subunit I) | MFKPEEIVKVEIITLARFRDTLLTYLHEMGVAQLDEVPIEGIQRDTPNEFYRKATSYSITLSRLIDTVKHYLPPRKGGIKEFIFPEEKKKRKYKYRGIEELIKDVEKFLGEAEPKIREVESEVSRLNNEISALKDSLNALELLSSLNIEIENLRGRSFLSVEVGLVDREKVENLIKELEEIAEGRVFTLRKDLAAKSLLVVVSLRKDSGKVISLLAKYGFEKIEIPEGEGLPKDLIPKYIERIKGKEKELEDVKLKGREIAEKYYEDLVFYKELMDNEREKSNFLSYLVRTEMTFGLLAWVPKKDVEKVVEGVKRITNGI... | Produces ATP from ADP in the presence of a proton gradient across the membrane. |
Q9UXU4 | VATE_PYRAB | V-type ATP synthase subunit E (V-ATPase subunit E) | MSGAELIIQEINREAERKIEYILNEAREEAEKIKEEAKRRAESKAEWILRRAKTQAELEKQRIIANARLEVRRKRLAVQEEIIRNVLDEVRKRLQEMPEEEYFESIKALLKEAVEELKEGKVRVYSNERTLALISSRIEEIRDYLGSISIEIGSAISTMGGVIVETEDGRIRIDNTFEARMERFEGEIRAKIAKVLFGG | Produces ATP from ADP in the presence of a proton gradient across the membrane. |
Q9UXU5 | VATC_PYRAB | V-type ATP synthase subunit C (V-ATPase subunit C) | MEWSTLTTIFDTSLAVVFTWVAYKTGQIIWKYTPYSYPNARIRAMEARLLTDQRFSELAESKSLQNFVVSLEDTDYGKRLTSLQSYNIEDVERALDLSLVDVIELMVKIMPKRIKGLFEIMLEEWDVRNIINVVKAKLSNMPPQDFIMPAGKMLQKVKAMAEAKTMEEMLVILEGTDYEEPLRRLLLNEITLQEFELELYKVHYSKLLRYVNSRKGEEKIIASEFVNMLIDYTNISTLLRAKLSSLAQEDIRKLIIPGGTLSKSTIEAMINSEDVVMALGELEGTKYGEVLREVREAVESGNIESVEIALRKYILRRMKE... | Produces ATP from ADP in the presence of a proton gradient across the membrane. |
Q9UXU6 | VATF_PYRAB | V-type ATP synthase subunit F (V-ATPase subunit F) | MKVVVMGDSDTVTGFRLAGVHEAYEFDFSELSIERARNKLKELVERDDVGIILITERLAQRIGDLPQVNLPIILQIPDKFGSIYGEELLREIVRKAVGIEIKR | Produces ATP from ADP in the presence of a proton gradient across the membrane. |
Q9UXU8 | VATB_PYRAB | V-type ATP synthase beta chain (V-ATPase subunit B) | MSKEYSTISKIYGPLMIVEGVKGVAYGEVVEIETESGEKRKGQVLDARENLAIVQVFEGTRDLDVKTTSVRFTGETLKVPVSMDMLGRIFNGIGKPIDGGPEIIPEDRRDVHGAPLNPVARAYPRDFIQTGISAIDGMNTLVRGQKLPIFSGSGLPHNQLAAQIARQAKVLGEEESFAVVFAAMGITYEEANFFKKSFEETGAIERAVLFLNLADDPAIERIITPRMALTVAEYLAFDYDMQVLVILTDMTNYCEALREISAAREEVPGRRGYPGYMYTDLATIYERAGRIRGKKGSITQMPILTMPDDDITHPIPDLTG... | Produces ATP from ADP in the presence of a proton gradient across the membrane. The archaeal beta chain is a regulatory subunit. |
Q9UXU9 | VATD_PYRAB | V-type ATP synthase subunit D (V-ATPase subunit D) | MPEILKIKPTRMELLKLKRRVKLAERGHKLLKEKQDALIMEFFTIYDEALSLRRELIKKMEEAFEALRRAQVDVGSLRLKEISIGVKPNEEIEIRTRNIMGVRVPLIEVPELKRKASDRGYAFISTTSTVDVAAEKFEEVLELAIRLAEVEESLKRLGKEIEKTKRRVNALEYIIIPRMKNTIKFIEQHLDEMERENFFRLKRVKAILEARQSM | Produces ATP from ADP in the presence of a proton gradient across the membrane. |
Q9UXX7 | RNP3_PYRAB | Ribonuclease P protein component 3 (RNase P component 3) (EC 3.1.26.5) (Rpp30) | MAGGGGLKFVEMDVRNDDAYKLAKEWFDEVVFSVKFQDSIDKELLREAERNYGLVAILLVNPRLSIVKEAVQRFKQNYLIYVESSDLRTIRYSIERGVDAIISPWVGRKDPGIDHTLARMMAKKGVALGFSLRPLLEASPYDKANILKFMRKAWQLTNKYKVKRFITSSANEKWHIRWPRDLATLGIIIGMEVQQAKAALSTYPDIILKRLK | Part of ribonuclease P, a protein complex that generates mature tRNA molecules by cleaving their 5'-ends. {ECO:0000255|HAMAP-Rule:MF_00756}. |
Q9UXX8 | RNABP_PYRAB | RNA-binding protein PAB1135 | MAGKLQAHNIRIRTFIHATEDPEKVLEALETLFPEEISPKDVEFEVIETEGYFGNPILVVDAEIKHSRNIRKFLENLRGLLSKEDRKYLWEHAEEKVDETGTFYIRFDKQKAYLGEVKVSEGEDVIHVRIKVKAFPMKKEAVVKAVREWLEGED | In vitro, binds efficiently double-stranded RNAs in a non-sequence specific manner. |
Q9UXX9 | AMTAB_PYRAB | Probable threonylcarbamoyladenosine tRNA methylthiotransferase (EC 2.8.4.5) (tRNA-t(6)A37 methylthiotransferase) | MVKIYIENYGCARNRADGEIMAALLHLAGHEIVYDPDEGEIVVVNSCAVKDPTERKIARRIKELLDSGKKVIVTGCLPHVNPDVIDERVSGILGVKSIDRIIQAVEYALRGEKLISVPDWRKRNLDKLDFPRLSPRTVYFIVPIAEGCLNACTYCATRFARGVLKSYSPEKIVGWVKWAIKQGYKEIWLSAEDTGCYGFDIGTNLAKLLDEITAIEGEFRVRVGMMNPNHVLKFLDELIEAYQDEKIYKFLHLPVQSGDNDILRRMGRNYTVEEFEEIVKEFRKKFPDLNLHTDIIVGFPGEDDEAFQRSVELIRRIRPD... | Catalyzes the methylthiolation of N6-threonylcarbamoyladenosine (t(6)A), leading to the formation of 2-methylthio-N6-threonylcarbamoyladenosine (ms(2)t(6)A) at position 37 in tRNAs that read codons beginning with adenine. |
Q9UXY2 | FER_PYRAB | Ferredoxin | MAWKVSVDQDTCIGDAICASLCPDVFEMNDEGKAQPKVEIIEDEELYNCAKEAMESCPVSAITIEEA | Ferredoxins are iron-sulfur proteins that transfer electrons in a wide variety of metabolic reactions. |
Q9UXZ4 | QUED_PYRAB | Putative 6-carboxy-5,6,7,8-tetrahydropterin synthase (CPH4 synthase) (EC 4.1.2.50) (Archaeosine biosynthesis protein QueD) | MKRVVSIKRRIYWTKEFDSSHFLELEYESKCRRLHGHTYRVEVEIEGEPNEHGMIFDFNHLSELIKTLDHKVIVSEKWVRYEEGYVLIEKNDKLLKLPRSEVVVIDKPNVTAEYIAEWISERILENAGENVREIRVRVWEDPRSYAEITLTLKPQGS | Catalyzes the conversion of 7,8-dihydroneopterin triphosphate (H2NTP) to 6-carboxy-5,6,7,8-tetrahydropterin (CPH4) and acetaldehyde. |
Q9UY21 | DPCKG_PYRAB | GTP-dependent dephospho-CoA kinase (EC 2.7.1.237) (Dephospho-coenzyme A kinase) (DPCK) | MKVLFKLPPSLRSELKKPVGELIEGDIPTPYLKVKDILTNEDPLVTVGDVVTENIMKVGLNPNLAIYDHKTERREYKPNIRSVEGVLITVKNPPGTITLPLLKAIKKAYSLLSHGKRVHIVVDGEEDLATIPAVLYAPIGTTVIYGQPKKGIVLIKVTNECKRRCAKIMRRMEVVRNGD | Catalyzes the GTP-dependent phosphorylation of the 3'-hydroxyl group of dephosphocoenzyme A to form coenzyme A (CoA). {ECO:0000255|HAMAP-Rule:MF_00590}. |
Q9UY33 | ENDA_PYRAB | tRNA-splicing endonuclease (EC 4.6.1.16) (tRNA-intron endonuclease) | MKKVIEFYLSGDRVYSTREKAINQLYNNRGYGELKGNKLFLSLIEAAYLVERGWIKVLDEDRELTFEEIFKLGKRKDEDFDIKYLVYKDLRDRGYIVKSALKFGSHFRVYRKNAEHSDWLIWVLRESEKLSPNDMTARVRVAHGVRKNMVMAIVDEDNDVVYYKIEWIKF | Endonuclease that removes tRNA introns. Cleaves pre-tRNA at the 5'- and 3'-splice sites to release the intron. The products are an intron and two tRNA half-molecules bearing 2',3' cyclic phosphate and 5'-OH termini. Recognizes a pseudosymmetric substrate in which 2 bulged loops of 3 bases are separated by a stem of 4 b... |
Q9UY68 | PURE_PYRAB | N5-carboxyaminoimidazole ribonucleotide mutase (N5-CAIR mutase) (EC 5.4.99.18) (5-(carboxyamino)imidazole ribonucleotide mutase) | MVKVGMPKVGIIMGSDSDLPVMKEAAKVLEDFEVDYEMKVISAHRTPERLHEYARTAEERGIEVIIAGAGGAAHLPGVLAALTMIPVIGVPIKSKALNGLDSLLSIVQMPPGIPVATVGIDGAKNAALLALEILSIKYPEIKEKLKKYREDMKRKVEEKSKKLEELGWRKYLEG | Catalyzes the conversion of N5-carboxyaminoimidazole ribonucleotide (N5-CAIR) to 4-carboxy-5-aminoimidazole ribonucleotide (CAIR). {ECO:0000255|HAMAP-Rule:MF_01929}. |
Q9UYB6 | EI2BL_PYRAB | Putative translation initiation factor eIF-2B subunit 2-like (eIF-2B GDP-GTP exchange factor) | MLPDRVLEILNEMKAERIRGATWLARKGAEAFLALAEELDEALLEDAIRELRSRIIEVNPSMASLYNLARFMPITNNRELVKMRALEFLRRMDEAKRELASIGAQLIDDGDVIITHSFSSSVLEIFKVAKDRRKSFKVIITESSPDYEGLHLANELENLGIEFEVITDSQMGLFCRKATISMVGADMVTRDGFVVNKAGTYLLALACHESDVPFYVAAETYKFHPTVKSNEVVLHERDFSRSGFRVRNVLFDLTPWKFIRGIITELGIVIPPRDIQ | Catalyzes the exchange of initiation factor 2-bound GDP for GTP. |
Q9UYF7 | CHED_PYRAB | Probable chemoreceptor glutamine deamidase CheD (EC 3.5.1.44) | MTREIKVGIGDYAVGKGEGIISTYGLGSCVGITLYDRVTKVGGLLHALLPEAARYGHRGNPAKYVDTGLQLLLKEVLKLGASKFRLEAKLFGGAQMFQNIKSDELKIGERNVQTAKRELKKLGIRLVAEDTGGRGGRTIYLDLSTGKVRMRKVIGGQVIEKVY | Probably deamidates glutamine residues to glutamate on methyl-accepting chemotaxis receptors (MCPs), playing an important role in chemotaxis. {ECO:0000255|HAMAP-Rule:MF_01440}. |
Q9UYI4 | PFDA_PYRAB | Prefoldin subunit alpha (GimC subunit alpha) | MAQSNKELEKLAYEYQLLQAQAQLLAQNLELLNLARAEVQTVKETLENLKKIEEEKPEILVPIGAGSFLKGIIVDKNNAIVSVGSGYAVERSVDDAISFLEKRLNEYDDAIKKTQQALTELEKRLGDVAKKAQEIQQKQAMGSFKVKK | Molecular chaperone capable of stabilizing a range of proteins. Seems to fulfill an ATP-independent, HSP70-like function in archaeal de novo protein folding (By similarity). |
Q9UYI6 | IF6_PYRAB | Translation initiation factor 6 (aIF-6) | MHIERLDFENSPYLGVFGVATDRVVLVREGLQEKKLEVIREVLKVPVIEASIMKSRIIGTLATGNSNAILVPWYVWDTEIERIKSAFKEYGIETEIVPFRTKYTALGNLILTNDKAALVSAKFSRDEAKEIGDILGVEVERGLIAGLHAVGSAGVVTNKGGLVHPEASDEELEWLSELFKVDVYVGTANMGVPYVGTCMLANSNGVVVGHLTTGPEIVKIEEALGLI | Binds to the 50S ribosomal subunit and prevents its association with the 30S ribosomal subunit to form the 70S initiation complex. {ECO:0000255|HAMAP-Rule:MF_00032}. |
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