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Sequence of PAP_BACSU

EC Number:3.9.1.2

EC Number
Recommended Name
Accession Code
Organism
No of amino acids
Molecular Weight [Da]
Source
protein arginine phosphatase
P39155
Bacillus subtilis (strain 168)
150
16785
Reaction
a [protein]-Nomega-phospho-L-arginine + H2O = a [protein]-L-arginine + phosphate
Other sequences found for EC No. 3.9.1.2

General information:

Sequence
show sequence in fasta format
  0 MDIIFVCTGN TCRSPMAEAL FKSIAEREGL NVNVRSAGVF ASPNGKATPH AVEALFEKHI
 60 ALNHVSSPLT EELMESADLV LAMTHQHKQI IASQFGRYRD KVFTLKEYVT GSHGDVLDPF
120 GGSIDIYKQT RDELEELLRQ LAKQLKKDRR
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Sequence related references
Sequence Reference
Authors
Title
Journal
Volume
Pages
Year
PubMed ID
72042
Martinussen J.,Glaser P.,Andersen P.S.,Saxild H.H.
Two genes encoding uracil phosphoribosyltransferase are present in Bacillus subtilis.
J. Bacteriol.
177
271-274
1995
72043
Kunst F.,Ogasawara N.,Moszer I.,Albertini A.M.,Alloni G.,Azevedo V.,Bertero M.G.,Bessieres P.,Bolotin A.,Borchert S.,Borriss R.,Boursier L.,Brans A.,Braun M.,Brignell S.C.,Bron S.,Brouillet S.,Bruschi C.V.,Caldwell B.,Capuano V.,Carter N.M.,Choi S.-K.,Codani J.-J.,Connerton I.F.,Cummings N.J.,Daniel R.A.,Denizot F.,Devine K.M.,Duesterhoeft A.,Ehrlich S.D.,Emmerson P.T.,Entian K.-D.,Errington J.,Fabret C.,Ferrari E.,Foulger D.,Fritz C.,Fujita M.,Fujita Y.,Fuma S.,Galizzi A.,Galleron N.,Ghim S.-Y.,Glaser P.,Goffeau A.,Golightly E.J.,Grandi G.,Guiseppi G.,Guy B.J.,Haga K.,Haiech J.,Harwood C.R.,Henaut A.,Hilbert H.,Holsappel S.,Hosono S.,Hullo M.-F.,Itaya M.,Jones L.-M.,Joris B.,Karamata D.,Kasahara Y.,Klaerr-Blanchard M.,Klein C.,Kobayashi Y.,Koetter P.,Koningstein G.,Krogh S.,Kumano M.,Kurita K.,Lapidus A.,Lardinois S.,Lauber J.,Lazarevic V.,Lee S.-M.,Levine A.,Liu H.,Masuda S.,Mauel C.,Medigue C.,Medina N.,Mellado R.P.,Mizuno M.,Moestl D.,Nakai S.,Noback M.,Noone D.,O'Reilly M.,Ogawa K.,Ogiwara A.,Oudega B.,Park S.-H.,Parro V.,Pohl T.M.,Portetelle D.,Porwollik S.,Prescott A.M.,Presecan E.,Pujic P.,Purnelle B.,Rapoport G.,Rey M.,Reynolds S.,Rieger M.,Rivolta C.,Rocha E.,Roche B.,Rose M.,Sadaie Y.,Sato T.,Scanlan E.,Schleich S.,Schroeter R.,Scoffone F.,Sekiguchi J.,Sekowska A.,Seror S.J.,Serror P.,Shin B.-S.,Soldo B.,Sorokin A.,Tacconi E.,Takagi T.,Takahashi H.,Takemaru K.,Takeuchi M.,Tamakoshi A.,Tanaka T.,Terpstra P.,Tognoni A.,Tosato V.,Uchiyama S.,Vandenbol M.,Vannier F.,Vassarotti A.,Viari A.,Wambutt R.,Wedler E.,Wedler H.,Weitzenegger T.,Winters P.,Wipat A.,Yamamoto H.,Yamane K.,Yasumoto K.,Yata K.,Yoshida K.,Yoshikawa H.-F.,Zumstein E.,Yoshikawa H.,Danchin A.
The complete genome sequence of the Gram-positive bacterium Bacillus subtilis.
Nature
390
249-256
1997
72044
Musumeci L.,Bongiorni C.,Tautz L.,Edwards R.A.,Osterman A.,Perego M.,Mustelin T.,Bottini N.
Low-molecular-weight protein tyrosine phosphatases of Bacillus subtilis.
J. Bacteriol.
187
4945-4956
2005
72045
Elsholz A.K.,Turgay K.,Michalik S.,Hessling B.,Gronau K.,Oertel D.,Mader U.,Bernhardt J.,Becher D.,Hecker M.,Gerth U.
Global impact of protein arginine phosphorylation on the physiology of Bacillus subtilis.
Proc. Natl. Acad. Sci. U.S.A.
109
7451-7456
2012
72046
Schmidt A.,Trentini D.B.,Spiess S.,Fuhrmann J.,Ammerer G.,Mechtler K.,Clausen T.
Quantitative phosphoproteomics reveals the role of protein arginine phosphorylation in the bacterial stress response.
Mol. Cell. Proteomics
13
537-550
2014
72047
Xu H.,Xia B.,Jin C.
Solution structure of a low-molecular-weight protein tyrosine phosphatase from Bacillus subtilis.
J. Bacteriol.
188
1509-1517
2006
72050
Fuhrmann J.,Mierzwa B.,Trentini D.B.,Spiess S.,Lehner A.,Charpentier E.,Clausen T.
Structural basis for recognizing phosphoarginine and evolving residue-specific protein phosphatases in gram-positive bacteria.
Cell Rep.
3
1832-1839
2013