[1]
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NUCLEOTIDE SEQUENCE [GENOMIC DNA].
STRAIN=SC167;
DOI=10.1007/BF00299137; PubMed=1552903 [NCBI, ExPASy, EBI, Israel, Japan]
Lisowsky T.;
"Dual function of a new nuclear gene for oxidative phosphorylation and vegetative growth in yeast.";
Mol. Gen. Genet. 232:58-64(1992).
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[2]
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NUCLEOTIDE SEQUENCE [GENOMIC DNA].
STRAIN=SF747-19D;
PubMed=8226973 [NCBI, ExPASy, EBI, Israel, Japan]
Nakai M.,
Endo T.,
Hase T.,
Matsubara H.;
"Intramitochondrial protein sorting. Isolation and characterization of the yeast MSP1 gene which belongs to a novel family of putative ATPases.";
J. Biol. Chem. 268:24262-24269(1993).
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[3]
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NUCLEOTIDE SEQUENCE [GENOMIC DNA].
STRAIN=ATCC 96604 / S288c / FY1679;
DOI=10.1002/(SICI)1097-0061(19970915)13:11<1077::AID-YEA152>3.3.CO;2-P; PubMed=9290212 [NCBI, ExPASy, EBI, Israel, Japan]
Rieger M.,
Brueckner M.,
Schaefer M.,
Mueller-Auer S.;
"Sequence analysis of 203 kilobases from Saccharomyces cerevisiae chromosome VII.";
Yeast 13:1077-1090(1997).
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[4]
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NUCLEOTIDE SEQUENCE [LARGE SCALE GENOMIC DNA].
STRAIN=ATCC 204508 / S288c;
PubMed=9169869 [NCBI, ExPASy, EBI, Israel, Japan]
Tettelin H.,
Agostoni-Carbone M.L.,
Albermann K.,
Albers M.,
Arroyo J.,
Backes U.,
Barreiros T.,
Bertani I.,
Bjourson A.J.,
Brueckner M.,
Bruschi C.V.,
Carignani G.,
Castagnoli L.,
Cerdan E.,
Clemente M.L.,
Coblenz A.,
Coglievina M.,
Coissac E.,
Defoor E.,
Del Bino S.,
Delius H.,
Delneri D.,
de Wergifosse P.,
Dujon B.,
Durand P.,
Entian K.-D.,
Eraso P.,
Escribano V.,
Fabiani L.,
Fartmann B.,
Feroli F.,
Feuermann M.,
Frontali L.,
Garcia-Gonzalez M.,
Garcia-Saez M.I.,
Goffeau A.,
Guerreiro P.,
Hani J.,
Hansen M.,
Hebling U.,
Hernandez K.,
Heumann K.,
Hilger F.,
Hofmann B.,
Indge K.J.,
James C.M.,
Klima R.,
Koetter P.,
Kramer B.,
Kramer W.,
Lauquin G.,
Leuther H.,
Louis E.J.,
Maillier E.,
Marconi A.,
Martegani E.,
Mazon M.J.,
Mazzoni C.,
McReynolds A.D.K.,
Melchioretto P.,
Mewes H.-W.,
Minenkova O.,
Mueller-Auer S.,
Nawrocki A.,
Netter P.,
Neu R.,
Nombela C.,
Oliver S.G.,
Panzeri L.,
Paoluzi S.,
Plevani P.,
Portetelle D.,
Portillo F.,
Potier S.,
Purnelle B.,
Rieger M.,
Riles L.,
Rinaldi T.,
Robben J.,
Rodrigues-Pousada C.,
Rodriguez-Belmonte E.,
Rodriguez-Torres A.M.,
Rose M.,
Ruzzi M.,
Saliola M.,
Sanchez-Perez M.,
Schaefer B.,
Schaefer M.,
Scharfe M.,
Schmidheini T.,
Schreer A.,
Skala J.,
Souciet J.-L.,
Steensma H.Y.,
Talla E.,
Thierry A.,
Vandenbol M.,
van der Aart Q.J.M.,
Van Dyck L.,
Vanoni M.,
Verhasselt P.,
Voet M.,
Volckaert G.,
Wambutt R.,
Watson M.D.,
Weber N.,
Wedler E.,
Wedler H.,
Wipfli P.,
Wolf K.,
Wright L.F.,
Zaccaria P.,
Zimmermann M.,
Zollner A.,
Kleine K.;
"The nucleotide sequence of Saccharomyces cerevisiae chromosome VII.";
Nature 387:81-84(1997).
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[5]
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REVISION OF GENE MODEL.
DOI=10.1002/(SICI)1097-0061(199612)12:15<1501::AID-YEA40>3.0.CO;2-H; PubMed=8972573 [NCBI, ExPASy, EBI, Israel, Japan]
Lisowsky T.;
"Removal of an intron with unique 3' branch site creates an amino-terminal protein sequence directing the scERV1 gene product to mitochondria.";
Yeast 12:1501-1510(1996).
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[6]
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FUNCTION, AND FAD-BINDING.
DOI=10.1016/S0014-5793(00)01767-1; PubMed=10899311 [NCBI, ExPASy, EBI, Israel, Japan]
Lee J.-E.,
Hofhaus G.,
Lisowsky T.;
"Erv1p from Saccharomyces cerevisiae is a FAD-linked sulfhydryl oxidase.";
FEBS Lett. 477:62-66(2000).
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[7]
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FUNCTION, MUTAGENESIS OF CYS-30; CYS-33; CYS-130; CYS-133; CYS-159 AND CYS-176, AND SUBUNIT.
DOI=10.1046/j.1432-1033.2003.03519.x; PubMed=12654008 [NCBI, ExPASy, EBI, Israel, Japan]
Hofhaus G.,
Lee J.E.,
Tews I.,
Rosenberg B.,
Lisowsky T.;
"The N-terminal cysteine pair of yeast sulfhydryl oxidase Erv1p is essential for in vivo activity and interacts with the primary redox centre.";
Eur. J. Biochem. 270:1528-1535(2003).
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[8]
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FUNCTION, AND SUBCELLULAR LOCATION.
DOI=10.1093/embo-reports/kve161; PubMed=11493598 [NCBI, ExPASy, EBI, Israel, Japan]
Lange H.,
Lisowsky T.,
Gerber J.,
Muhlenhoff U.,
Kispal G.,
Lill R.;
"An essential function of the mitochondrial sulfhydryl oxidase Erv1p/ALR in the maturation of cytosolic Fe/S proteins.";
EMBO Rep. 2:715-720(2001).
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[9]
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SUBCELLULAR LOCATION [LARGE SCALE ANALYSIS], AND MASS SPECTROMETRY.
DOI=10.1073/pnas.2135385100; PubMed=14576278 [NCBI, ExPASy, EBI, Israel, Japan]
Sickmann A.,
Reinders J.,
Wagner Y.,
Joppich C.,
Zahedi R.P.,
Meyer H.E.,
Schoenfisch B.,
Perschil I.,
Chacinska A.,
Guiard B.,
Rehling P.,
Pfanner N.,
Meisinger C.;
"The proteome of Saccharomyces cerevisiae mitochondria.";
Proc. Natl. Acad. Sci. U.S.A. 100:13207-13212(2003).
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[10]
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FUNCTION, AND INTERACTION WITH MIA40.
DOI=10.1016/j.cell.2005.04.011; PubMed=15989955 [NCBI, ExPASy, EBI, Israel, Japan]
Mesecke N.,
Terziyska N.,
Kozany C.,
Baumann F.,
Neupert W.,
Hell K.,
Herrmann J.M.;
"A disulfide relay system in the intermembrane space of mitochondria that mediates protein import.";
Cell 121:1059-1069(2005).
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[11]
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FUNCTION, AND INTERACTION WITH MIA40.
DOI=10.1016/j.jmb.2005.08.051; PubMed=16181637 [NCBI, ExPASy, EBI, Israel, Japan]
Rissler M.,
Wiedemann N.,
Pfannschmidt S.,
Gabriel K.,
Guiard B.,
Pfanner N.,
Chacinska A.;
"The essential mitochondrial protein Erv1 cooperates with Mia40 in biogenesis of intermembrane space proteins.";
J. Mol. Biol. 353:485-492(2005).
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[12]
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FUNCTION.
DOI=10.1016/j.jmb.2005.08.049; PubMed=16185707 [NCBI, ExPASy, EBI, Israel, Japan]
Allen S.,
Balabanidou V.,
Sideris D.P.,
Lisowsky T.,
Tokatlidis K.;
"Erv1 mediates the Mia40-dependent protein import pathway and provides a functional link to the respiratory chain by shuttling electrons to cytochrome c.";
J. Mol. Biol. 353:937-944(2005).
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