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Sequence of PTP3_YEAST

EC Number:3.1.3.48

EC Number
Recommended Name
Accession Code
Organism
No of amino acids
Molecular Weight [Da]
Source
protein-tyrosine-phosphatase
P40048
Saccharomyces cerevisiae (strain ATCC 204508 / S288c)
928
105224
Reaction
[a protein]-tyrosine phosphate + H2O = [a protein]-tyrosine + phosphate
Other sequences found for EC No. 3.1.3.48

General information:

Sequence
show sequence in fasta format
  0 MKDSVDCPSI LPTDRTSVLS ETSTLVGSSS HVYSRHAPMN SYHNSMNSNI YHSPKASSPL
 60 VSYKTSSPVL LKRATAPVLP SFKPKEQRYN KPQGCSLITA VELGKIIETL PDEKVLLLDV
120 RPFTEHAKSI ITNSIHVCLP STLLRRKNFT FSKLLDNLTP SEQSVLKSKL AIDNLRIIIY
180 DSTANQTESS VSLPCYGIAS KLIEFDTNVK KTVSILMCGF PQFKILFPDH INTNTFNSDC
240 ISSAEPKSPK TNLMNSLHNT APHMTATTPL SSPQMNLKLK VPDDSRSDHS NFSSSPSPRN
300 VLSDSPMSSS SPISALFKFQ LPAPQTNINQ MFKFSQNEEI MGLETYLSAV NIKEEHERWY
360 NNDSAKKSLQ NFQFPKNQNS LEKDTNKDKL GFQIRYENLS KNYEKEVIDS VIPEWFQHLM
420 SIPKIELVSQ FQKLDFLEKR RLNHSVSFRK KENSFILEKP SSYPEQLTST SSSTIMPPKF
480 PDVNKVQKRS HSQPIFTQYS KYKSMLSLES DSDSESDDVI ISSGVELGAK NRYKDIFPYE
540 HSRVILKKGL QSSKGIKHSH STSDGGILDN YINANYLSLP RFSVEQNSSF QTTTTTTRRV
600 RYIATQAPMP STVHDFYTCI LNNGVPLVLS LTNDFENGIE KCYRYWQEGN YNGIHVKLLE
660 KKILKMPSTT SMRKNTMGTQ NSSLYSAGVQ GNSSNYSTDN DNDNDNNNNN NNNSNIAVTA
720 AACDDDDDDD DDAILIRKIL LTYHDQEKPY ELLQIQVKNW PDLGTLLNPI SILQAINVKN
780 HIIDTLFARN YYQNDQLPTI LVHCSAGCGR TGTLCTIDSI LSNFEMFEML QKEFVKLKYP
840 AKLFDPISWT INIFRKQRIS MVQNINQFIF IYDCLLFYFR LRLDDITERT DGDGSNKDNI
900 SLSALIEQIE KLEILQTFVD DKLKELPQ
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Sequence related references
Sequence Reference
Authors
Title
Journal
Volume
Pages
Year
PubMed ID
1105616
Zhan X.-L.,Deschenes R.J.,Guan K.-L.
Differential regulation of FUS3 MAP kinase by tyrosine-specific phosphatases PTP2/PTP3 and dual-specificity phosphatase MSG5 in Saccharomyces cerevisiae.
Genes Dev.
11
1690-1702
1997
1105617
Dietrich F.S.,Mulligan J.T.,Hennessy K.M.,Yelton M.A.,Allen E.,Araujo R.,Aviles E.,Berno A.,Brennan T.,Carpenter J.,Chen E.,Cherry J.M.,Chung E.,Duncan M.,Guzman E.,Hartzell G.,Hunicke-Smith S.,Hyman R.W.,Kayser A.,Komp C.,Lashkari D.,Lew H.,Lin D.,Mosedale D.,Nakahara K.,Namath A.,Norgren R.,Oefner P.,Oh C.,Petel F.X.,Roberts D.,Sehl P.,Schramm S.,Shogren T.,Smith V.,Taylor P.,Wei Y.,Botstein D.,Davis R.W.
The nucleotide sequence of Saccharomyces cerevisiae chromosome V.
Nature
387
78-81
1997
1105618
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
1105619
Wurgler-Murphy S.M.,Maeda T.,Witten E.A.,Saito H.
Regulation of the Saccharomyces cerevisiae HOG1 mitogen-activated protein kinase by the PTP2 and PTP3 protein tyrosine phosphatases.
Mol. Cell. Biol.
17
1289-1297
1997
1105620
Jacoby T.,Flanagan H.,Faykin A.,Seto A.G.,Mattison C.P.,Ota I.M.
Two protein-tyrosine phosphatases inactivate the osmotic stress response pathway in yeast by targeting the mitogen-activated protein kinase, Hog1.
J. Biol. Chem.
272
17749-17755
1997
1105621
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
1105622
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
1105623
Li X.,Gerber S.A.,Rudner A.D.,Beausoleil S.A.,Haas W.,Villen J.,Elias J.E.,Gygi S.P.
Large-scale phosphorylation analysis of alpha-factor-arrested Saccharomyces cerevisiae.
J. Proteome Res.
6
1190-1197
2007
1105624
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
1105625
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
1105626
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