Any feedback?
Please rate this page
(sequences.php)
(0/150)

BRENDA support

Sequence of AK_YEAST

EC Number:2.7.2.4

EC Number
Recommended Name
Accession Code
Organism
No of amino acids
Molecular Weight [Da]
Source
aspartate kinase
P10869
Saccharomyces cerevisiae (strain ATCC 204508 / S288c)
527
58110
Reaction
ATP + L-aspartate = ADP + 4-phospho-L-aspartate
Other sequences found for EC No. 2.7.2.4

General information:

Sequence
show sequence in fasta format
  0 MPMDFQPTSS HSNWVVQKFG GTSVGKFPVQ IVDDIVKHYS KPDGPNNNVA VVCSARSSYT
 60 KAEGTTSRLL KCCDLASQES EFQDIIEVIR QDHIDNADRF ILNPALQAKL VDDTNKELEL
120 VKKYLNASKV LGEVSSRTVD LVMSCGEKLS CLFMTALCND RGCKAKYVDL SHIVPSDFSA
180 SALDNSFYTF LVQALKEKLA PFVSAKERIV PVFTGFFGLV PTGLLNGVGR GYTDLCAALI
240 AVAVNADELQ VWKEVDGIFT ADPRKVPEAR LLDSVTPEEA SELTYYGSEV IHPFTMEQVI
300 RAKIPIRIKN VQNPLGNGTI IYPDNVAKKG ESTPPHPPEN LSSSFYEKRK RGATAITTKN
360 DIFVINIHSN KKTLSHGFLA QIFTILDKYK LVVDLISTSE VHVSMALPIP DADSLKSLRQ
420 AEEKLRILGS VDITKKLSIV SLVGKHMKQY IGIAGTMFTT LAEEGINIEM ISQGANEINI
480 SCVINESDSI KALQCIHAKL LSERTNTSNQ FEHAIDERLE QLKRLGI
Download this sequence
in fasta format
Download all sequences for 2.7.2.4
in fasta format
in csv (Excel, OpenOffice) format
Sequence related references
Sequence Reference
Authors
Title
Journal
Volume
Pages
Year
PubMed ID
512979
Rafalski J.A.,Falco S.C.
Structure of the yeast HOM3 gene which encodes aspartokinase.
J. Biol. Chem.
263
2146-2151
1988
512980
Rafalski J.A.,Falco S.C.
Structure of the yeast HOM3 gene which encodes aspartokinase.
J. Biol. Chem.
265
15346-15346
1990
512981
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
512982
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
512983
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
512984
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
512985
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
512986
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
512987
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