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

BRENDA support

Sequence of ACNA_BACSU

EC Number:4.2.1.3

EC Number
Recommended Name
Accession Code
Organism
No of amino acids
Molecular Weight [Da]
Source
aconitate hydratase
P09339
Bacillus subtilis (strain 168)
909
99334
Reaction
citrate = cis-aconitate + H2O
Other sequences found for EC No. 4.2.1.3

General information:

Sequence
show sequence in fasta format
  0 MANEQKTAAK DVFQARKTFT TNGKTYHYYS LKALEDSGIG KVSKLPYSIK VLLESVLRQV
 60 DGFVIKKEHV ENLAKWGTAE LKDIDVPFKP SRVILQDFTG VPAVVDLASL RKAMAAVGGD
120 PDKINPEIPV DLVIDHSVQV DKAGTEDALA VNMDLEFERN AERYKFLSWA KKAFNNYQAV
180 PPATGIVHQV NLEFLASVVH AIEEDGELVT YPDTLVGTDS HTTMINGIGV LGWGVGGIEA
240 EAGMLGQPSY FPVPEVIGAK LVGKLPNGTT ATDLALKVTQ VLREKGVVGK FVEFFGPGIA
300 ELPLADRATI ANMAPEYGAT CGFFPVDEEA LNYLRLTGRD PEHIDVVEAY CRSNGLFYTP
360 DAEDPQFTDV VEIDLSQIEA NLSGPKRPQD LIPLSAMQET FKKQLVSPAG NQGFGLNAEE
420 ENKEIKFKLL NGEETVMKTG AIAIAAITSC TNTSNPYVLI GAGLVAKKAV ELGLKVPNYV
480 KTSLAPGSKV VTGYLVNSGL LPYMKELGFN LVGYGCTTCI GNSGPLSPEI EEAVAKNDLL
540 ITSVLSGNRN FEGRIHPLVK GNYLASPPLV VAYALAGTVN INLKTDPIGV GKDGQNVYFN
600 DIWPSMDEIN ALVKQTVTPE LFRKEYETVF DDNKRWNEIE TTDEALYKWD NDSTYIQNPP
660 FFEEMSVEPG KVEPLKGLRV VGKFGDSVTT DHISPAGAIG KDTPAGKYLQ EKGVSPRDFN
720 SYGSRRGNHE VMMRGTFANI RIKNQIAPGT EGGFTTYWPT GEVTSIYDAC MKYKEDKTGL
780 VVLAGKDYGM GSSRDWAAKG TNLLGIRTVI AESFERIHRS NLVFMGVLPL QFKQGENADT
840 LGLTGKEVIE VDVDETVRPR DLVTVRAINE DGNVTTFEAV VRFDSEVEID YYRHGGILQM
900 VLREKMKQS
Download this sequence
in fasta format
Download all sequences for 4.2.1.3
in fasta format
in csv (Excel, OpenOffice) format
Sequence related references
Sequence Reference
Authors
Title
Journal
Volume
Pages
Year
PubMed ID
386361
Rose M.,Entian K.-D.
New genes in the 170 degrees region of the Bacillus subtilis genome encode DNA gyrase subunits, a thioredoxin, a xylanase and an amino acid transporter.
Microbiology
142
3097-3101
1996
386362
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
386364
Dingman D.W.,Sonenshein A.L.
Purification of aconitase from Bacillus subtilis and correlation of its N-terminal amino acid sequence with the sequence of the citB gene.
J. Bacteriol.
169
3062-3067
1987
386366
Craig J.E.,Ford M.J.,Blaydon D.C.,Sonenshein A.L.
A null mutation in the Bacillus subtilis aconitase gene causes a block in Spo0A-phosphate-dependent gene expression.
J. Bacteriol.
179
7351-7359
1997
386367
Alen C.,Sonenshein A.L.
Bacillus subtilis aconitase is an RNA-binding protein.
Proc. Natl. Acad. Sci. U.S.A.
96
10412-10417
1999
386368
Serio A.W.,Pechter K.B.,Sonenshein A.L.
Bacillus subtilis aconitase is required for efficient late-sporulation gene expression.
J. Bacteriol.
188
6396-6405
2006
386369
Pechter K.B.,Meyer F.M.,Serio A.W.,Stuelke J.,Sonenshein A.L.
Two roles for aconitase in the regulation of tricarboxylic acid branch gene expression in Bacillus subtilis.
J. Bacteriol.
195
1525-1537
2013
386370
Mittal M.,Pechter K.B.,Picossi S.,Kim H.J.,Kerstein K.O.,Sonenshein A.L.
Dual role of CcpC protein in regulation of aconitase gene expression in Listeria monocytogenes and Bacillus subtilis.
Microbiology
159
68-76
2013
386371
Reddick J.J.,Sirkisoon S.,Dahal R.A.,Hardesty G.,Hage N.E.,Booth W.T.,Quattlebaum A.L.,Mills S.N.,Meadows V.G.,Adams S.L.H.,Doyle J.S.,Kiel B.E.
First biochemical characterization of a methylcitric acid cycle from Bacillus subtilis strain 168.
Biochemistry
56
5698-5711
2017