Sequence of MAO4_BACSU
EC Number:1.1.1.40
EC Number
Recommended Name
Accession Code
Organism
No of amino acids
Molecular Weight [Da]
Source
malate dehydrogenase (oxaloacetate-decarboxylating) (NADP+)
O34962
Bacillus subtilis (strain 168)
410
43667
Reaction
(S)-malate + NADP+ = pyruvate + CO2 + NADPH
General information:
Sequence
0 MSLREEALHL HKVNQGKLES KSKVEVRNAK DLSLAYSPGV AEPCKDIHED INKVYDYTMK
60 GNMVAVVTDG TAVLGLGNIG PEAALPVMEG KAVLFKSFAG VDAFPIALNT NDVDKIVETV
120 KLLEPTFGGV NLEDIAAPNC FIIEERLKKE TNIPVFHDDQ HGTAIVTVAG LVNALKLSGK
180 SMSSIKVVAN GAGAAGIAII KLLHHYGVRD IVMCDSKGAI YEGRPNGMND VKNEVAKFTN
240 QDRKDGSLKD VIVDADVFIG VSVAGALTKE MVQSMAKDPI IFAMANPNPE IMPEDAREAG
300 ASVVGTGRSD FPNQVNNVLA FPGIFRGALD VRATHINEEM KIAAVEAIAS LVSEDELSAD
360 YVIPAPFDKR VAPAVAKAVA KAAMETGVAR ITVDPEEVAE KTRKLTIIGE
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Sequence related references
Sequence Reference
Authors
Title
Journal
Volume
Pages
Year
PubMed ID
265011
Lapidus A.,Galleron N.,Sorokin A.,Ehrlich S.D.
Sequencing and functional annotation of the Bacillus subtilis genes in the 200 kb rrnB-dnaB region.
Microbiology
143
3431-3441
1997
265012
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
265013
Lerondel G.,Doan T.,Zamboni N.,Sauer U.,Aymerich S.
YtsJ has the major physiological role of the four paralogous malic enzyme isoforms in Bacillus subtilis.
J. Bacteriol.
188
4727-4736
2006
265014
Meyer F.M.,Stuelke J.
Malate metabolism in Bacillus subtilis: distinct roles for three classes of malate-oxidizing enzymes.
FEMS Microbiol. Lett.
339
17-22
2013
265015
Hoerl M.,Fuhrer T.,Zamboni N.
Bifunctional malic/malolactic enzyme provides a novel mechanism for NADPH-balancing in Bacillus subtilis.
MBio
12
0-0
2021
265016
Gaballa A.,Su T.T.,Helmann J.D.
The Bacillus subtilis monothiol bacilliredoxin BrxC (YtxJ) and the Bdr (YpdA) disulfide reductase reduce S-bacillithiolated proteins.
Redox Biol.
42
101935-101935
2021
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