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Sequence of MCSB_BACSU

EC Number:2.7.14.1

EC Number
Recommended Name
Accession Code
Organism
No of amino acids
Molecular Weight [Da]
Source
protein arginine kinase
P37570
Bacillus subtilis (strain 168)
363
41124
Reaction
ATP + a [protein]-L-arginine = ADP + a [protein]-Nomega-phospho-L-arginine
Other sequences found for EC No. 2.7.14.1

General information:

Sequence
show sequence in fasta format
  0 MSLKHFIQDA LSSWMKQKGP ESDIVLSSRI RLARNFEHIR FPTRYSNEEA SSIIQQFEDQ
 60 FSEQEIPGIG KFVLIRMNDA QPLEKRVLVE KHLISPNLTE SPFGGCLLSE NEEVSVMLNE
120 EDHIRIQCLF PGFQLLEAMK AANQVDDWIE EKVDYAFNEQ RGYLTSCPTN VGTGLRASVM
180 MHLPALVLTR QINRIIPAIN QLGLVVRGIY GEGSEAVGNI FQISNQITLG KSEQDIVEDL
240 NSVAAQLIEQ ERSAREAIYQ TSKIELEDRV YRSYGVLSNC RMIESKETAK CLSDVRLGID
300 LGIIKGLSSN ILNELMILTQ PGFLQQYSGG ALRPNERDIR RAALIRERLH LEMNGKRQED
360 ESI
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Sequence related references
Sequence Reference
Authors
Title
Journal
Volume
Pages
Year
PubMed ID
57515
Ogasawara N.,Nakai S.,Yoshikawa H.
Systematic sequencing of the 180 kilobase region of the Bacillus subtilis chromosome containing the replication origin.
DNA Res.
1
1-14
1994
57516
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
57517
Msadek T.,Kunst F.,Rapoport G.
MecB of Bacillus subtilis, a member of the ClpC ATPase family, is a pleiotropic regulator controlling competence gene expression and growth at high temperature.
Proc. Natl. Acad. Sci. U.S.A.
91
5788-5792
1994
57518
Derre I.,Rapoport G.,Msadek T.
CtsR, a novel regulator of stress and heat shock response, controls clp and molecular chaperone gene expression in gram-positive bacteria.
Mol. Microbiol.
31
117-131
1999
57519
Kruger E.,Zuhlke D.,Witt E.,Ludwig H.,Hecker M.
Clp-mediated proteolysis in Gram-positive bacteria is autoregulated by the stability of a repressor.
EMBO J.
20
852-863
2001
57520
Kirstein J.,Zuhlke D.,Gerth U.,Turgay K.,Hecker M.
A tyrosine kinase and its activator control the activity of the CtsR heat shock repressor in B. subtilis.
EMBO J.
24
3435-3445
2005
57521
Hahn J.,Kramer N.,Briley K. Jr.,Dubnau D.
McsA and B mediate the delocalization of competence proteins from the cell poles of Bacillus subtilis.
Mol. Microbiol.
72
202-215
2009
57522
Elsholz A.K.,Hempel K.,Michalik S.,Gronau K.,Becher D.,Hecker M.,Gerth U.
Activity control of the ClpC adaptor McsB in Bacillus subtilis.
J. Bacteriol.
193
3887-3893
2011
57523
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
57524
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
57525
Suskiewicz M.J.,Hajdusits B.,Beveridge R.,Heuck A.,Vu L.D.,Kurzbauer R.,Hauer K.,Thoeny V.,Rumpel K.,Mechtler K.,Meinhart A.,Clausen T.
Structure of McsB, a protein kinase for regulated arginine phosphorylation.
Nat. Chem. Biol.
15
510-518
2019