[1]
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NUCLEOTIDE SEQUENCE [GENOMIC DNA].
STRAIN=ATCC 90840 / EAY235 / FY23;
DOI=10.1002/(SICI)1097-0061(19970315)13:3<241::AID-YEA61>3.0.CO;2-#; PubMed=9090053 [NCBI, ExPASy, EBI, Israel, Japan]
Verhasselt P.,
Volckaert G.;
"Sequence analysis of a 37.6 kbp cosmid clone from the right arm of Saccharomyces cerevisiae chromosome XII, carrying YAP3, HOG1, SNR6, tRNA-Arg3 and 23 new open reading frames, among which several homologies to proteins involved in cell division control and to mammalian growth factors and other animal proteins are found.";
Yeast 13:241-250(1997).
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[2]
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NUCLEOTIDE SEQUENCE [LARGE SCALE GENOMIC DNA].
STRAIN=ATCC 204511 / S288c / AB972;
PubMed=9169871 [NCBI, ExPASy, EBI, Israel, Japan]
Johnston M.,
Hillier L.W.,
Riles L.,
Albermann K.,
Andre B.,
Ansorge W.,
Benes V.,
Brueckner M.,
Delius H.,
Dubois E.,
Duesterhoeft A.,
Entian K.-D.,
Floeth M.,
Goffeau A.,
Hebling U.,
Heumann K.,
Heuss-Neitzel D.,
Hilbert H.,
Hilger F.,
Kleine K.,
Koetter P.,
Louis E.J.,
Messenguy F.,
Mewes H.-W.,
Miosga T.,
Moestl D.,
Mueller-Auer S.,
Nentwich U.,
Obermaier B.,
Piravandi E.,
Pohl T.M.,
Portetelle D.,
Purnelle B.,
Rechmann S.,
Rieger M.,
Rinke M.,
Rose M.,
Scharfe M.,
Scherens B.,
Scholler P.,
Schwager C.,
Schwarz S.,
Underwood A.P.,
Urrestarazu L.A.,
Vandenbol M.,
Verhasselt P.,
Vierendeels F.,
Voet M.,
Volckaert G.,
Voss H.,
Wambutt R.,
Wedler E.,
Wedler H.,
Zimmermann F.K.,
Zollner A.,
Hani J.,
Hoheisel J.D.;
"The nucleotide sequence of Saccharomyces cerevisiae chromosome XII.";
Nature 387:87-90(1997).
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[3]
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PROTEIN SEQUENCE OF 2-8; 16-48; 80-102 AND 114-176, CLEAVAGE OF INITIATOR METHIONINE, ACETYLATION AT SER-2, AND MASS SPECTROMETRY.
Bienvenut W.V.,
Peters C.;
Submitted (MAY-2005) to UniProtKB.
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[4]
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PROTEIN SEQUENCE OF 8-15; 33-41; 80-102 AND 125-176, AND CONJUGATION TO URM1.
DOI=10.1128/EC.2.5.930-936.2003; PubMed=14555475 [NCBI, ExPASy, EBI, Israel, Japan]
Goehring A.S.,
Rivers D.M.,
Sprague G.F. Jr.;
"Attachment of the ubiquitin-related protein Urm1p to the antioxidant protein Ahp1p.";
Eukaryot. Cell 2:930-936(2003).
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[5]
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PROTEIN SEQUENCE OF 16-41; 49-68; 82-96; 114-123 AND 142-150, POST-TRANSLATIONAL MODIFICATION, DISULFIDE BONDS, AND BIOPHYSICOCHEMICAL PROPERTIES.
DOI=10.1021/bi9817818; PubMed=9888818 [NCBI, ExPASy, EBI, Israel, Japan]
Jeong J.S.,
Kwon S.J.,
Kang S.W.,
Rhee S.G.,
Kim K.;
"Purification and characterization of a second type thioredoxin peroxidase (type II TPx) from Saccharomyces cerevisiae.";
Biochemistry 38:776-783(1999).
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[6]
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PROTEIN SEQUENCE OF 82-99.
STRAIN=ATCC 204508 / S288c;
DOI=10.1002/elps.11501501210; PubMed=7895733 [NCBI, ExPASy, EBI, Israel, Japan]
Garrels J.I.,
Futcher B.,
Kobayashi R.,
Latter G.I.,
Schwender B.,
Volpe T.,
Warner J.R.,
McLaughlin C.S.;
"Protein identifications for a Saccharomyces cerevisiae protein database.";
Electrophoresis 15:1466-1486(1994).
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[7]
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CHARACTERIZATION.
DOI=10.1074/jbc.274.8.4537; PubMed=9988687 [NCBI, ExPASy, EBI, Israel, Japan]
Lee J.,
Spector D.,
Godon C.,
Labarre J.,
Toledano M.B.;
"A new antioxidant with alkyl hydroperoxide defense properties in yeast.";
J. Biol. Chem. 274:4537-4544(1999).
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[8]
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CHARACTERIZATION.
PubMed=10635552 [NCBI, ExPASy, EBI, Israel, Japan]
Farcasanu I.C.,
Hirata D.,
Tsuchiya E.,
Mizuta K.,
Miyakawa T.;
"Involvement of thioredoxin peroxidase type II (Ahp1p) of Saccharomyces cerevisiae in Mn2+ homeostasis.";
Biosci. Biotechnol. Biochem. 63:1871-1881(1999).
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[9]
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CHARACTERIZATION, INDUCTION, AND SUBCELLULAR LOCATION.
DOI=10.1074/jbc.275.8.5723; PubMed=10681558 [NCBI, ExPASy, EBI, Israel, Japan]
Park S.G.,
Cha M.-K.,
Jeong W.,
Kim I.-H.;
"Distinct physiological functions of thiol peroxidase isoenzymes in Saccharomyces cerevisiae.";
J. Biol. Chem. 275:5723-5732(2000).
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[10]
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ACETYLATION [LARGE SCALE ANALYSIS] AT SER-2, PHOSPHORYLATION AT SER-2, AND MASS SPECTROMETRY.
DOI=10.1074/mcp.M400219-MCP200; PubMed=15665377 [NCBI, ExPASy, EBI, Israel, Japan]
Gruhler A.,
Olsen J.V.,
Mohammed S.,
Mortensen P.,
Faergeman N.J.,
Mann M.,
Jensen O.N.;
"Quantitative phosphoproteomics applied to the yeast pheromone signaling pathway.";
Mol. Cell. Proteomics 4:310-327(2005).
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[11]
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PHOSPHORYLATION [LARGE SCALE ANALYSIS] AT SER-22, AND MASS SPECTROMETRY.
DOI=10.1073/pnas.0607084104; PubMed=17287358 [NCBI, ExPASy, EBI, Israel, Japan]
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).
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[12]
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PHOSPHORYLATION [LARGE SCALE ANALYSIS] AT SER-59 AND SER-171, AND MASS SPECTROMETRY.
DOI=10.1074/mcp.M700468-MCP200; PubMed=18407956 [NCBI, ExPASy, EBI, Israel, Japan]
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).
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[13]
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3D-STRUCTURE MODELING, AND STRUCTURE BY NMR.
DOI=10.1021/bi035551r; PubMed=14640681 [NCBI, ExPASy, EBI, Israel, Japan]
Trivelli X.,
Krimm I.,
Ebel C.,
Verdoucq L.,
Prouzet-Mauleon V.,
Chartier Y.,
Tsan P.,
Lauquin G.,
Meyer Y.,
Lancelin J.-M.;
"Characterization of the yeast peroxiredoxin Ahp1 in its reduced active and overoxidized inactive forms using NMR.";
Biochemistry 42:14139-14149(2003).
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[14]
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LEVEL OF PROTEIN EXPRESSION [LARGE SCALE ANALYSIS].
DOI=10.1038/nature02046; PubMed=14562106 [NCBI, ExPASy, EBI, Israel, Japan]
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).
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