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Autophagy-related protein 21 (Cytoplasm to vacuole transport protein 21) (Homologous with SVP1 protein 1) (Maturation of proaminopeptidase I protein 1)

 ATG21_YEAST             Reviewed;         496 AA.
Q02887; D6W3R6;
15-MAR-2005, integrated into UniProtKB/Swiss-Prot.
01-NOV-1996, sequence version 1.
07-APR-2021, entry version 168.
RecName: Full=Autophagy-related protein 21;
AltName: Full=Cytoplasm to vacuole transport protein 21;
AltName: Full=Homologous with SVP1 protein 1;
AltName: Full=Maturation of proaminopeptidase I protein 1;
Name=ATG21; Synonyms=CVT21, HSV1, MAI1; OrderedLocusNames=YPL100W;
Saccharomyces cerevisiae (strain ATCC 204508 / S288c) (Baker's yeast).
Eukaryota; Fungi; Dikarya; Ascomycota; Saccharomycotina; Saccharomycetes;
Saccharomycetales; Saccharomycetaceae; Saccharomyces.
NCBI_TaxID=559292;
[1]
NUCLEOTIDE SEQUENCE [LARGE SCALE GENOMIC DNA].
STRAIN=ATCC 204508 / S288c;
PubMed=9169875;
Bussey H., Storms R.K., Ahmed A., Albermann K., Allen E., Ansorge W.,
Araujo R., Aparicio A., Barrell B.G., Badcock K., Benes V., Botstein D.,
Bowman S., Brueckner M., Carpenter J., Cherry J.M., Chung E.,
Churcher C.M., Coster F., Davis K., Davis R.W., Dietrich F.S., Delius H.,
DiPaolo T., Dubois E., Duesterhoeft A., Duncan M., Floeth M., Fortin N.,
Friesen J.D., Fritz C., Goffeau A., Hall J., Hebling U., Heumann K.,
Hilbert H., Hillier L.W., Hunicke-Smith S., Hyman R.W., Johnston M.,
Kalman S., Kleine K., Komp C., Kurdi O., Lashkari D., Lew H., Lin A.,
Lin D., Louis E.J., Marathe R., Messenguy F., Mewes H.-W., Mirtipati S.,
Moestl D., Mueller-Auer S., Namath A., Nentwich U., Oefner P., Pearson D.,
Petel F.X., Pohl T.M., Purnelle B., Rajandream M.A., Rechmann S.,
Rieger M., Riles L., Roberts D., Schaefer M., Scharfe M., Scherens B.,
Schramm S., Schroeder M., Sdicu A.-M., Tettelin H., Urrestarazu L.A.,
Ushinsky S., Vierendeels F., Vissers S., Voss H., Walsh S.V., Wambutt R.,
Wang Y., Wedler E., Wedler H., Winnett E., Zhong W.-W., Zollner A.,
Vo D.H., Hani J.;
"The nucleotide sequence of Saccharomyces cerevisiae chromosome XVI.";
Nature 387:103-105(1997).
[2]
GENOME REANNOTATION.
STRAIN=ATCC 204508 / S288c;
PubMed=24374639; DOI=10.1534/g3.113.008995;
Engel S.R., Dietrich F.S., Fisk D.G., Binkley G., Balakrishnan R.,
Costanzo M.C., Dwight S.S., Hitz B.C., Karra K., Nash R.S., Weng S.,
Wong E.D., Lloyd P., Skrzypek M.S., Miyasato S.R., Simison M., Cherry J.M.;
"The reference genome sequence of Saccharomyces cerevisiae: Then and now.";
G3 (Bethesda) 4:389-398(2014).
[3]
FUNCTION.
PubMed=11536337; DOI=10.1002/yea.764;
Georgakopoulos T., Koutroubas G., Vakonakis I., Tzermia M., Prokova V.,
Voutsina A., Alexandraki D.;
"Functional analysis of the Saccharomyces cerevisiae
YFR021w/YGR223c/YPL100w ORF family suggests relations to
mitochondrial/peroxisomal functions and amino acid signalling pathways.";
Yeast 18:1155-1171(2001).
[4]
FUNCTION, AND SUBCELLULAR LOCATION.
PubMed=11852075; DOI=10.1016/s0014-5793(02)02252-4;
Barth H., Meiling-Wesse K., Epple U.D., Thumm M.;
"Mai1p is essential for maturation of proaminopeptidase I but not for
autophagy.";
FEBS Lett. 512:173-179(2002).
[5]
NOMENCLATURE.
PubMed=14536056; DOI=10.1016/s1534-5807(03)00296-x;
Klionsky D.J., Cregg J.M., Dunn W.A. Jr., Emr S.D., Sakai Y.,
Sandoval I.V., Sibirny A., Subramani S., Thumm M., Veenhuis M., Ohsumi Y.;
"A unified nomenclature for yeast autophagy-related genes.";
Dev. Cell 5:539-545(2003).
[6]
SUBCELLULAR LOCATION [LARGE SCALE ANALYSIS].
PubMed=14562095; DOI=10.1038/nature02026;
Huh W.-K., Falvo J.V., Gerke L.C., Carroll A.S., Howson R.W.,
Weissman J.S., O'Shea E.K.;
"Global analysis of protein localization in budding yeast.";
Nature 425:686-691(2003).
[7]
LEVEL OF PROTEIN EXPRESSION [LARGE SCALE ANALYSIS].
PubMed=14562106; DOI=10.1038/nature02046;
Ghaemmaghami S., Huh W.-K., Bower K., Howson R.W., Belle A., Dephoure N.,
O'Shea E.K., Weissman J.S.;
"Global analysis of protein expression in yeast.";
Nature 425:737-741(2003).
[8]
INTERACTION WITH PIP2, AND SUBCELLULAR LOCATION.
PubMed=15103325; DOI=10.1038/sj.emboj.7600203;
Dove S.K., Piper R.C., McEwen R.K., Yu J.W., King M.C., Hughes D.C.,
Thuring J., Holmes A.B., Cooke F.T., Michell R.H., Parker P.J.,
Lemmon M.A.;
"Svp1p defines a family of phosphatidylinositol 3,5-bisphosphate
effectors.";
EMBO J. 23:1922-1933(2004).
[9]
FUNCTION, AND SUBCELLULAR LOCATION.
PubMed=15194695; DOI=10.1074/jbc.m401066200;
Meiling-Wesse K., Barth H., Voss C., Eskelinen E.-L., Epple U.D., Thumm M.;
"Atg21 is required for effective recruitment of Atg8 to the
preautophagosomal structure during the Cvt pathway.";
J. Biol. Chem. 279:37741-37750(2004).
[10]
FUNCTION, SUBCELLULAR LOCATION, AND MUTAGENESIS OF 343-ARG-ARG-344.
PubMed=15155809; DOI=10.1091/mbc.e04-02-0147;
Stromhaug P.E., Reggiori F., Guan J., Wang C.-W., Klionsky D.J.;
"Atg21 is a phosphoinositide binding protein required for efficient
lipidation and localization of Atg8 during uptake of aminopeptidase I by
selective autophagy.";
Mol. Biol. Cell 15:3553-3566(2004).
[11]
FUNCTION, SUBCELLULAR LOCATION, AND DOMAIN.
PubMed=16876790; DOI=10.1016/j.febslet.2006.07.041;
Krick R., Tolstrup J., Appelles A., Henke S., Thumm M.;
"The relevance of the phosphatidylinositolphosphat-binding motif FRRGT of
Atg18 and Atg21 for the Cvt pathway and autophagy.";
FEBS Lett. 580:4632-4638(2006).
[12]
PHOSPHORYLATION [LARGE SCALE ANALYSIS] AT SER-237, AND IDENTIFICATION BY
MASS SPECTROMETRY [LARGE SCALE ANALYSIS].
PubMed=17287358; DOI=10.1073/pnas.0607084104;
Chi A., Huttenhower C., Geer L.Y., Coon J.J., Syka J.E.P., Bai D.L.,
Shabanowitz J., Burke D.J., Troyanskaya O.G., Hunt D.F.;
"Analysis of phosphorylation sites on proteins from Saccharomyces
cerevisiae by electron transfer dissociation (ETD) mass spectrometry.";
Proc. Natl. Acad. Sci. U.S.A. 104:2193-2198(2007).
[13]
SUBCELLULAR LOCATION, AND FUNCTION.
PubMed=18769150; DOI=10.4161/auto.6801;
Krick R., Henke S., Tolstrup J., Thumm M.;
"Dissecting the localization and function of Atg18, Atg21 and Ygr223c.";
Autophagy 4:896-910(2008).
[14]
IDENTIFICATION BY MASS SPECTROMETRY [LARGE SCALE ANALYSIS].
PubMed=18407956; DOI=10.1074/mcp.m700468-mcp200;
Albuquerque C.P., Smolka M.B., Payne S.H., Bafna V., Eng J., Zhou H.;
"A multidimensional chromatography technology for in-depth phosphoproteome
analysis.";
Mol. Cell. Proteomics 7:1389-1396(2008).
[15]
FUNCTION.
PubMed=19793921; DOI=10.1091/mbc.e09-03-0225;
Kanki T., Wang K., Baba M., Bartholomew C.R., Lynch-Day M.A., Du Z.,
Geng J., Mao K., Yang Z., Yen W.L., Klionsky D.J.;
"A genomic screen for yeast mutants defective in selective mitochondria
autophagy.";
Mol. Biol. Cell 20:4730-4738(2009).
[16]
PHOSPHORYLATION [LARGE SCALE ANALYSIS] AT THR-213, AND IDENTIFICATION BY
MASS SPECTROMETRY [LARGE SCALE ANALYSIS].
PubMed=19779198; DOI=10.1126/science.1172867;
Holt L.J., Tuch B.B., Villen J., Johnson A.D., Gygi S.P., Morgan D.O.;
"Global analysis of Cdk1 substrate phosphorylation sites provides insights
into evolution.";
Science 325:1682-1686(2009).
[17]
FUNCTION, AND DOMAIN.
PubMed=20154084; DOI=10.1074/jbc.m109.080374;
Nair U., Cao Y., Xie Z., Klionsky D.J.;
"Roles of the lipid-binding motifs of Atg18 and Atg21 in the cytoplasm to
vacuole targeting pathway and autophagy.";
J. Biol. Chem. 285:11476-11488(2010).
[18]
FUNCTION.
PubMed=22108003; DOI=10.4161/auto.7.12.18424;
Nair U., Thumm M., Klionsky D.J., Krick R.;
"GFP-Atg8 protease protection as a tool to monitor autophagosome
biogenesis.";
Autophagy 7:1546-1550(2011).
-!- FUNCTION: Required for cytoplasm to vacuole transport (Cvt) vesicles
formation and mitophagy. Involved in binding of
phosphatidylethanolamine to ATG8 and in recruitment of ATG8 and ATG5 to
the pre-autophagosomal structure. Protects ATG8 from ARG4-mediated
cleavage. Essential for maturation of proaminopeptidase I.
{ECO:0000269|PubMed:11536337, ECO:0000269|PubMed:11852075,
ECO:0000269|PubMed:15155809, ECO:0000269|PubMed:15194695,
ECO:0000269|PubMed:16876790, ECO:0000269|PubMed:18769150,
ECO:0000269|PubMed:19793921, ECO:0000269|PubMed:20154084,
ECO:0000269|PubMed:22108003}.
-!- SUBCELLULAR LOCATION: Cytoplasm. Vacuole. Note=And perivacuolar
punctate structures.
-!- DOMAIN: Contains a beta-propeller domain involved in specific binding
to phosphatidylinositol 3,5-bisphosphate (PIP2).
-!- DOMAIN: The FRRGT-motif is essential for the cytoplasm to vacuole
transport (Cvt) pathway and for the recruitment of ATG8 and ATG16 to
the PAS in nutrient-rich medium and in both its recruitment to and
dissociation from the PAS under starvation conditions.
-!- MISCELLANEOUS: Present with 6020 molecules/cell in log phase SD medium.
{ECO:0000269|PubMed:14562106}.
-!- SIMILARITY: Belongs to the WD repeat SVP1 family. {ECO:0000305}.
---------------------------------------------------------------------------
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EMBL; U43281; AAB68199.1; -; Genomic_DNA.
EMBL; BK006949; DAA11332.1; -; Genomic_DNA.
PIR; S61966; S61966.
RefSeq; NP_015225.1; NM_001183914.1.
SMR; Q02887; -.
BioGRID; 36080; 138.
IntAct; Q02887; 4.
MINT; Q02887; -.
STRING; 4932.YPL100W; -.
iPTMnet; Q02887; -.
MaxQB; Q02887; -.
PaxDb; Q02887; -.
PRIDE; Q02887; -.
EnsemblFungi; YPL100W_mRNA; YPL100W; YPL100W.
GeneID; 856004; -.
KEGG; sce:YPL100W; -.
SGD; S000006021; ATG21.
VEuPathDB; FungiDB:YPL100W; -.
eggNOG; KOG2110; Eukaryota.
HOGENOM; CLU_025895_5_2_1; -.
InParanoid; Q02887; -.
OMA; PFGKCFE; -.
Reactome; R-SCE-1632852; Macroautophagy.
PRO; PR:Q02887; -.
Proteomes; UP000002311; Chromosome XVI.
RNAct; Q02887; protein.
GO; GO:0005829; C:cytosol; IDA:SGD.
GO; GO:0005768; C:endosome; IDA:SGD.
GO; GO:0019898; C:extrinsic component of membrane; IBA:GO_Central.
GO; GO:0000329; C:fungal-type vacuole membrane; IDA:SGD.
GO; GO:0000407; C:phagophore assembly site; IDA:SGD.
GO; GO:0034045; C:phagophore assembly site membrane; IBA:GO_Central.
GO; GO:0080025; F:phosphatidylinositol-3,5-bisphosphate binding; IDA:SGD.
GO; GO:0032266; F:phosphatidylinositol-3-phosphate binding; IDA:SGD.
GO; GO:0070273; F:phosphatidylinositol-4-phosphate binding; IDA:SGD.
GO; GO:0000422; P:autophagy of mitochondrion; IMP:SGD.
GO; GO:0044804; P:autophagy of nucleus; IBA:GO_Central.
GO; GO:0036474; P:cell death in response to hydrogen peroxide; IMP:SGD.
GO; GO:0032258; P:cytoplasm to vacuole transport by the Cvt pathway; IMP:SGD.
GO; GO:0016236; P:macroautophagy; IMP:SGD.
GO; GO:0034727; P:piecemeal microautophagy of the nucleus; IMP:SGD.
GO; GO:0006497; P:protein lipidation; IMP:SGD.
GO; GO:0034497; P:protein localization to phagophore assembly site; IMP:SGD.
GO; GO:0016050; P:vesicle organization; IMP:SGD.
Gene3D; 2.130.10.10; -; 1.
InterPro; IPR015943; WD40/YVTN_repeat-like_dom_sf.
InterPro; IPR001680; WD40_repeat.
InterPro; IPR036322; WD40_repeat_dom_sf.
SMART; SM00320; WD40; 3.
SUPFAM; SSF50978; SSF50978; 1.
1: Evidence at protein level;
Autophagy; Cytoplasm; Phosphoprotein; Protein transport;
Reference proteome; Repeat; Transport; Vacuole; WD repeat.
CHAIN 1..496
/note="Autophagy-related protein 21"
/id="PRO_0000050882"
REPEAT 294..334
/note="WD 1"
REPEAT 346..385
/note="WD 2"
REPEAT 448..488
/note="WD 3"
MOTIF 342..346
/note="FRRGT-motif"
COMPBIAS 77..80
/note="Poly-Glu"
MOD_RES 213
/note="Phosphothreonine"
/evidence="ECO:0007744|PubMed:19779198"
MOD_RES 237
/note="Phosphoserine"
/evidence="ECO:0007744|PubMed:17287358"
MUTAGEN 343..344
/note="RR->KK: Loss of aminopeptidase I precursor
maturation and no more association with vacuole and
punctate structures."
/evidence="ECO:0000269|PubMed:15155809"
SEQUENCE 496 AA; 55188 MW; 4454C28180E3974D CRC64;
MKVLQFNQDA TCCVVAASSH QISIFNCDPF GKCFEIDTKN SKKKTSNNNG SASNSESRNN
EESILITNGS RDRTDAEEEE DNEDNALVTG NILKEGEFVI EMLFSTSLIA IADRGQGLNK
GKKLKIVNTK RKCTICEIVF PHEIVDVVMN RKRMCVLLES DQIFIYDISC MKPLETIDLW
EDHYKRSQAN SFSNASNTGT LEGDSANLNR VATNLLANAT QKSVNGSNPS VRTRRNSLRS
KIRPRMVLSN DDRSILCFTA YSSPKKNKPN SEALYDVVIY DTLNVTPVNY LNSVHKGNVA
CLAVSHDGKL LATASDKGTI IRVFHTGVDS DYMSSRSLFK EFRRGTRLCN LYQLAFDKSM
TMIGCVGDTD TIHLFKLDDA SNSLPGDNSS NGHWNEEEYI LASNSNPSMG TPKEIPLSKP
RIANYFSKKI KSSIPNQNLS RNFAYITVNE SNRSCLGFPD EFPNQVYIAS DDGTFSIYSI
PSKPGECVLT KNNKFT


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[ATG18 AUT10 CVT18 NMR1 SVP1 YFR021W] Autophagy-related protein 18 (Cytoplasm to vacuole targeting protein 18) (Needed for premeiotic replication protein 1) (Swollen vacuole phenotype protein 1)
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[] Genome polyprotein [Cleaved into: Core protein precursor (Capsid protein C) (p23); Mature core protein (p21); Envelope glycoprotein E1 (gp32) (gp35); Envelope glycoprotein E2 (NS1) (gp68) (gp70); Viroporin p7; Protease NS2 (p23) (EC 3.4.22.-) (Non-structural protein 2) (NS2); Serine protease/helicase NS3 (EC 3.4.21.98) (EC 3.6.1.15) (EC 3.6.4.13) (Hepacivirin) (NS3 helicase) (NS3 protease) (NS3P) (Viroporin p70); Non-structural protein 4A (NS4A) (p8); Non-structural protein 4B (NS4B) (p27); Non-structural protein 5A (NS5A) (p56/58); RNA-directed RNA polymerase (EC 2.7.7.48) (NS5B) (p68)]
[] Genome polyprotein [Cleaved into: Core protein precursor (Capsid protein C) (p23); Mature core protein (p21); Envelope glycoprotein E1 (gp32) (gp35); Envelope glycoprotein E2 (NS1) (gp68) (gp70); Viroporin p7; Protease NS2 (p23) (EC 3.4.22.-) (Non-structural protein 2) (NS2); Serine protease/helicase NS3 (EC 3.4.21.98) (EC 3.6.1.15) (EC 3.6.4.13) (Hepacivirin) (NS3 helicase) (NS3 protease) (NS3P) (Viroporin p70); Non-structural protein 4A (NS4A) (p8); Non-structural protein 4B (NS4B) (p27); Non-structural protein 5A (NS5A) (p56/58); RNA-directed RNA polymerase (EC 2.7.7.48) (NS5B) (p68)]
[atg-18 atgr-18 tag-283 F41E6.13] Autophagy-related protein 18
[] Core protein precursor (EC 2.7.7.48) (EC 3.4.21.98) (EC 3.6.1.15) (EC 3.6.4.13) (Envelope glycoprotein E1) (Envelope glycoprotein E2) (Genome polyprotein) (Gp32) (Hepacivirin) (Mature core protein) (NS1) (NS3 helicase) (NS3 protease) (NS3P) (NS5B) (Non-structural protein 4A) (Non-structural protein 4B) (Non-structural protein 5A) (Protease NS2) (RNA-directed RNA polymerase) (Serine protease/helicase NS3) (Viroporin p7) (Viroporin p70) (gp35) (gp68) (gp70) (p21) (p23) (p27) (p56/58) (p68) (p8)
[] Core protein precursor (EC 2.7.7.48) (EC 3.4.21.98) (EC 3.6.1.15) (EC 3.6.4.13) (Envelope glycoprotein E1) (Envelope glycoprotein E2) (Genome polyprotein) (Gp32) (Hepacivirin) (Mature core protein) (NS1) (NS3 helicase) (NS3 protease) (NS3P) (NS5B) (Non-structural protein 4A) (Non-structural protein 4B) (Non-structural protein 5A) (Protease NS2) (RNA-directed RNA polymerase) (Serine protease/helicase NS3) (Viroporin p7) (Viroporin p70) (gp35) (gp68) (gp70) (p21) (p23) (p27) (p56/58) (p68) (p8)
[] Genome polyprotein [Cleaved into: Core protein precursor (Capsid protein C) (p23); Mature core protein (p21); Envelope glycoprotein E1 (gp32) (gp35); Envelope glycoprotein E2 (NS1) (gp68) (gp70); Viroporin p7; Protease NS2 (p23) (EC 3.4.22.-) (Non-structural protein 2) (NS2); Serine protease/helicase NS3 (EC 3.4.21.98) (EC 3.6.1.15) (EC 3.6.4.13) (Hepacivirin) (NS3 helicase) (NS3 protease) (NS3P) (Viroporin p70); Non-structural protein 4A (NS4A) (p8); Non-structural protein 4B (NS4B) (p27); Non-structural protein 5A (NS5A) (p56/58); RNA-directed RNA polymerase (EC 2.7.7.48) (NS5B) (p68)]
[ATG16L1 APG16L UNQ9393/PRO34307] Autophagy-related protein 16-1 (APG16-like 1)
[] Genome polyprotein [Cleaved into: Core protein precursor (Capsid protein C) (p23); Mature core protein (p21); Envelope glycoprotein E1 (gp32) (gp35); Envelope glycoprotein E2 (NS1) (gp68) (gp70); Viroporin p7; Protease NS2 (p23) (EC 3.4.22.-) (Non-structural protein 2) (NS2); Serine protease/helicase NS3 (EC 3.4.21.98) (EC 3.6.1.15) (EC 3.6.4.13) (Hepacivirin) (NS3 helicase) (NS3 protease) (NS3P) (Viroporin p70); Non-structural protein 4A (NS4A) (p8); Non-structural protein 4B (NS4B) (p27); Non-structural protein 5A (NS5A) (p56/58); RNA-directed RNA polymerase (EC 2.7.7.48) (NS5B) (p68)]
[] Genome polyprotein [Cleaved into: Core protein precursor (Capsid protein C) (p23); Mature core protein (p21); Envelope glycoprotein E1 (gp32) (gp35); Envelope glycoprotein E2 (NS1) (gp68) (gp70); Viroporin p7; Protease NS2 (p23) (EC 3.4.22.-) (Non-structural protein 2) (NS2); Serine protease/helicase NS3 (EC 3.4.21.98) (EC 3.6.1.15) (EC 3.6.4.13) (Hepacivirin) (NS3 helicase) (NS3 protease) (NS3P) (Viroporin p70); Non-structural protein 4A (NS4A) (p8); Non-structural protein 4B (NS4B) (p27); Non-structural protein 5A (NS5A) (p56/58); RNA-directed RNA polymerase (EC 2.7.7.48) (NS5B) (p68)]
[] Genome polyprotein [Cleaved into: Core protein precursor (Capsid protein C) (p23); Mature core protein (p21); Envelope glycoprotein E1 (gp32) (gp35); Envelope glycoprotein E2 (NS1) (gp68) (gp70); Viroporin p7; Protease NS2 (p23) (EC 3.4.22.-); Serine protease/helicase NS3 (EC 3.4.21.98) (EC 3.6.1.15) (EC 3.6.4.13) (Hepacivirin) (NS3 helicase) (NS3 protease) (NS3P) (Viroporin p70); Non-structural protein 4A (NS4A) (p8); Non-structural protein 4B (NS4B) (p27); Non-structural protein 5A (NS5A) (p56/58); RNA-directed RNA polymerase (EC 2.7.7.48) (NS5B) (p68)]
[] Core protein precursor (EC 2.7.7.48) (EC 3.4.21.98) (EC 3.6.1.15) (EC 3.6.4.13) (Envelope glycoprotein E1) (Envelope glycoprotein E2) (Genome polyprotein) (Gp32) (Hepacivirin) (Mature core protein) (NS1) (NS3 helicase) (NS3 protease) (NS3P) (NS5B) (Non-structural protein 4A) (Non-structural protein 4B) (Non-structural protein 5A) (Protease NS2) (RNA-directed RNA polymerase) (Serine protease/helicase NS3) (Viroporin p7) (Viroporin p70) (gp35) (gp68) (gp70) (p21) (p23) (p27) (p56/58) (p68) (p8) (Fragment)
[] Genome polyprotein [Cleaved into: Core protein precursor (Capsid protein C) (p23); Mature core protein (p21); Envelope glycoprotein E1 (gp32) (gp35); Envelope glycoprotein E2 (NS1) (gp68) (gp70); Viroporin p7; Protease NS2 (p23) (EC 3.4.22.-) (Non-structural protein 2) (NS2); Serine protease/helicase NS3 (EC 3.4.21.98) (EC 3.6.1.15) (EC 3.6.4.13) (Hepacivirin) (NS3 helicase) (NS3 protease) (NS3P) (Viroporin p70); Non-structural protein 4A (NS4A) (p8); Non-structural protein 4B (NS4B) (p27); Non-structural protein 5A (NS5A) (p56/58); RNA-directed RNA polymerase (EC 2.7.7.48) (NS5B) (p68)]
[] Genome polyprotein [Cleaved into: Core protein precursor (Capsid protp26663ein C) (p23); Mature core protein (p21); Envelope glycoprotein E1 (gp32) (gp35); Envelope glycoprotein E2 (NS1) (gp68) (gp70); Viroporin p7; Protease NS2 (p23) (EC 3.4.22.-); Serine protease/helicase NS3 (EC 3.4.21.98) (EC 3.6.1.15) (EC 3.6.4.13) (Hepacivirin) (NS3 helicase) (NS3 protease) (NS3P) (Viroporin p70); Non-structural protein 4A (NS4A) (p8); Non-structural protein 4B (NS4B) (p27); Non-structural protein 5A (NS5A) (p56/58); RNA-directed RNA polymerase (EC 2.7.7.48) (NS5B) (p68)]
[] Genome polyprotein [Cleaved into: Core protein precursor (Capsid protein C) (p23); Mature core protein (p21); Envelope glycoprotein E1 (gp32) (gp35); Envelope glycoprotein E2 (NS1) (gp68) (gp70); Viroporin p7; Protease NS2 (p23) (EC 3.4.22.-) (Non-structural protein 2) (NS2); Serine protease/helicase NS3 (EC 3.4.21.98) (EC 3.6.1.15) (EC 3.6.4.13) (Hepacivirin) (NS3 helicase) (NS3 protease) (NS3P) (Viroporin p70); Non-structural protein 4A (NS4A) (p8); Non-structural protein 4B (NS4B) (p27); Non-structural protein 5A (NS5A) (p56/58); RNA-directed RNA polymerase (EC 2.7.7.48) (NS5B) (p68)]
[] Genome polyprotein [Cleaved into: Core protein precursor (Capsid protein C) (p23); Mature core protein (p21); Envelope glycoprotein E1 (gp32) (gp35); Envelope glycoprotein E2 (NS1) (gp68) (gp70); Viroporin p7; Protease NS2 (p23) (EC 3.4.22.-) (Non-structural protein 2) (NS2); Serine protease/helicase NS3 (EC 3.4.21.98) (EC 3.6.1.15) (EC 3.6.4.13) (Hepacivirin) (NS3 helicase) (NS3 protease) (NS3P) (Viroporin p70); Non-structural protein 4A (NS4A) (p8); Non-structural protein 4B (NS4B) (p27); Non-structural protein 5A (NS5A) (p56/58); RNA-directed RNA polymerase (EC 2.7.7.48) (NS5B) (p68)]
[] Genome polyprotein [Cleaved into: Core protein precursor (Capsid protein C) (p23); Mature core protein (p21); Envelope glycoprotein E1 (gp32) (gp35); Envelope glycoprotein E2 (NS1) (gp68) (gp70); Viroporin p7; Protease NS2 (p23) (EC 3.4.22.-) (Non-structural protein 2) (NS2); Serine protease/helicase NS3 (EC 3.4.21.98) (EC 3.6.1.15) (EC 3.6.4.13) (Hepacivirin) (NS3 helicase) (NS3 protease) (NS3P) (Viroporin p70); Non-structural protein 4A (NS4A) (p8); Non-structural protein 4B (NS4B) (p27); Non-structural protein 5A (NS5A) (p56/58); RNA-directed RNA polymerase (EC 2.7.7.48) (NS5B) (p68)]
[] Genome polyprotein [Cleaved into: Core protein precursor (Capsid protein C) (p23); Mature core protein (p21); Envelope glycoprotein E1 (gp32) (gp35); Envelope glycoprotein E2 (NS1) (gp68) (gp70); Viroporin p7; Protease NS2 (p23) (EC 3.4.22.-) (Non-structural protein 2) (NS2); Serine protease/helicase NS3 (EC 3.4.21.98) (EC 3.6.1.15) (EC 3.6.4.13) (Hepacivirin) (NS3 helicase) (NS3 protease) (NS3P) (Viroporin p70); Non-structural protein 4A (NS4A) (p8); Non-structural protein 4B (NS4B) (p27); Non-structural protein 5A (NS5A) (p56/58); RNA-directed RNA polymerase (EC 2.7.7.48) (NS5B) (p68)]
[] Genome polyprotein [Cleaved into: Core protein precursor (Capsid protein C) (p23); Mature core protein (p21); Envelope glycoprotein E1 (gp32) (gp35); Envelope glycoprotein E2 (NS1) (gp68) (gp70); Viroporin p7; Protease NS2 (p23) (EC 3.4.22.-) (Non-structural protein 2) (NS2); Serine protease/helicase NS3 (EC 3.4.21.98) (EC 3.6.1.15) (EC 3.6.4.13) (Hepacivirin) (NS3 helicase) (NS3 protease) (NS3P) (Viroporin p70); Non-structural protein 4A (NS4A) (p8); Non-structural protein 4B (NS4B) (p27); Non-structural protein 5A (NS5A) (p56/58); RNA-directed RNA polymerase (EC 2.7.7.48) (NS5B) (p68)]
[Atg7 Apg7l] Ubiquitin-like modifier-activating enzyme ATG7 (ATG12-activating enzyme E1 ATG7) (Autophagy-related protein 7) (APG7-like) (mAGP7) (Ubiquitin-activating enzyme E1-like protein)
[] Core protein precursor (EC 2.7.7.48) (EC 3.4.21.98) (EC 3.6.1.15) (EC 3.6.4.13) (Envelope glycoprotein E1) (Envelope glycoprotein E2) (Genome polyprotein) (Gp32) (Hepacivirin) (Mature core protein) (NS1) (NS3 helicase) (NS3 protease) (NS3P) (NS5B) (Non-structural protein 4A) (Non-structural protein 4B) (Non-structural protein 5A) (Protease NS2) (RNA-directed RNA polymerase) (Serine protease/helicase NS3) (Viroporin p7) (Viroporin p70) (gp35) (gp68) (gp70) (p21) (p23) (p27) (p56/58) (p68) (p8) (Fragment)
[] Core protein precursor (EC 2.7.7.48) (EC 3.4.21.98) (EC 3.6.1.15) (EC 3.6.4.13) (Envelope glycoprotein E1) (Envelope glycoprotein E2) (Genome polyprotein) (Gp32) (Hepacivirin) (Mature core protein) (NS1) (NS3 helicase) (NS3 protease) (NS3P) (NS5B) (Non-structural protein 4A) (Non-structural protein 4B) (Non-structural protein 5A) (Protease NS2) (RNA-directed RNA polymerase) (Serine protease/helicase NS3) (Viroporin p7) (Viroporin p70) (gp35) (gp68) (gp70) (p21) (p23) (p27) (p56/58) (p68) (p8)
[] Core protein precursor (EC 2.7.7.48) (EC 3.4.21.98) (EC 3.6.1.15) (EC 3.6.4.13) (Envelope glycoprotein E1) (Envelope glycoprotein E2) (Genome polyprotein) (Gp32) (Hepacivirin) (Mature core protein) (NS1) (NS3 helicase) (NS3 protease) (NS3P) (NS5B) (Non-structural protein 4A) (Non-structural protein 4B) (Non-structural protein 5A) (Protease NS2) (RNA-directed RNA polymerase) (Serine protease/helicase NS3) (Viroporin p7) (Viroporin p70) (gp35) (gp68) (gp70) (p21) (p23) (p27) (p56/58) (p68) (p8) (Fragment)
[] Core protein precursor (EC 2.7.7.48) (EC 3.4.21.98) (EC 3.6.1.15) (EC 3.6.4.13) (Envelope glycoprotein E1) (Envelope glycoprotein E2) (Genome polyprotein) (Gp32) (Hepacivirin) (Mature core protein) (NS1) (NS3 helicase) (NS3 protease) (NS3P) (NS5B) (Non-structural protein 4A) (Non-structural protein 4B) (Non-structural protein 5A) (Protease NS2) (RNA-directed RNA polymerase) (Serine protease/helicase NS3) (Viroporin p7) (Viroporin p70) (gp35) (gp68) (gp70) (p21) (p23) (p27) (p56/58) (p68) (p8) (Fragment)

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