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Sequence of GABT_ECOLI

EC Number:2.6.1.48

EC Number
Recommended Name
Accession Code
Organism
No of amino acids
Molecular Weight [Da]
Source
5-aminovalerate transaminase
P22256
Escherichia coli (strain K12)
426
45775
Reaction
5-aminopentanoate + 2-oxoglutarate = 5-oxopentanoate + L-glutamate
Other sequences found for EC No. 2.6.1.48

General information:

Sequence
show sequence in fasta format
  0 MNSNKELMQR RSQAIPRGVG QIHPIFADRA ENCRVWDVEG REYLDFAGGI AVLNTGHLHP
 60 KVVAAVEAQL KKLSHTCFQV LAYEPYLELC EIMNQKVPGD FAKKTLLVTT GSEAVENAVK
120 IARAATKRSG TIAFSGAYHG RTHYTLALTG KVNPYSAGMG LMPGHVYRAL YPCPLHGISE
180 DDAIASIHRI FKNDAAPEDI AAIVIEPVQG EGGFYASSPA FMQRLRALCD EHGIMLIADE
240 VQSGAGRTGT LFAMEQMGVA PDLTTFAKSI AGGFPLAGVT GRAEVMDAVA PGGLGGTYAG
300 NPIACVAALE VLKVFEQENL LQKANDLGQK LKDGLLAIAE KHPEIGDVRG LGAMIAIELF
360 EDGDHNKPDA KLTAEIVARA RDKGLILLSC GPYYNVLRIL VPLTIEDAQI RQGLEIISQC
420 FDEAKQ
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Sequence related references
Sequence Reference
Authors
Title
Journal
Volume
Pages
Year
PubMed ID
930543
Bartsch K.,von Johnn-Marteville A.,Schulz A.
Molecular analysis of two genes of the Escherichia coli gab cluster: nucleotide sequence of the glutamate:succinic semialdehyde transaminase gene (gabT) and characterization of the succinic semialdehyde dehydrogenase gene (gabD).
J. Bacteriol.
172
7035-7042
1990
930544
Yamamoto Y.,Aiba H.,Baba T.,Hayashi K.,Inada T.,Isono K.,Itoh T.,Kimura S.,Kitagawa M.,Makino K.,Miki T.,Mitsuhashi N.,Mizobuchi K.,Mori H.,Nakade S.,Nakamura Y.,Nashimoto H.,Oshima T.,Oyama S.,Saito N.,Sampei G.,Satoh Y.,Sivasundaram S.,Tagami H.,Takahashi H.,Takeda J.,Takemoto K.,Uehara K.,Wada C.,Yamagata S.,Horiuchi T.
Construction of a contiguous 874-kb sequence of the Escherichia coli-K12 genome corresponding to 50.0-68.8 min on the linkage map and analysis of its sequence features.
DNA Res.
4
91-113
1997
930545
Blattner F.R.,Plunkett G. III,Bloch C.A.,Perna N.T.,Burland V.,Riley M.,Collado-Vides J.,Glasner J.D.,Rode C.K.,Mayhew G.F.,Gregor J.,Davis N.W.,Kirkpatrick H.A.,Goeden M.A.,Rose D.J.,Mau B.,Shao Y.
The complete genome sequence of Escherichia coli K-12.
Science
277
1453-1462
1997
930546
Hayashi K.,Morooka N.,Yamamoto Y.,Fujita K.,Isono K.,Choi S.,Ohtsubo E.,Baba T.,Wanner B.L.,Mori H.,Horiuchi T.
Highly accurate genome sequences of Escherichia coli K-12 strains MG1655 and W3110.
Mol. Syst. Biol.
2
0-0
2006
930547
Schulz A.,Taggeselle P.,Tripier D.,Bartsch K.
Stereospecific production of the herbicide phosphinothricin (glufosinate) by transamination: isolation and characterization of a phosphinothricin-specific transaminase from Escherichia coli.
Appl. Environ. Microbiol.
56
1-6
1990
930548
Schneider B.L.,Ruback S.,Kiupakis A.K.,Kasbarian H.,Pybus C.,Reitzer L.
The Escherichia coli gabDTPC operon: specific gamma-aminobutyrate catabolism and nonspecific induction.
J. Bacteriol.
184
6976-6986
2002
930549
Metzner M.,Germer J.,Hengge R.
Multiple stress signal integration in the regulation of the complex sigma S-dependent csiD-ygaF-gabDTP operon in Escherichia coli.
Mol. Microbiol.
51
799-811
2004
930550
Kurihara S.,Kato K.,Asada K.,Kumagai H.,Suzuki H.
A putrescine-inducible pathway comprising PuuE-YneI in which gamma-aminobutyrate is degraded into succinate in Escherichia coli K-12.
J. Bacteriol.
192
4582-4591
2010
930551
Knorr S.,Sinn M.,Galetskiy D.,Williams R.M.,Wang C.,Mueller N.,Mayans O.,Schleheck D.,Hartig J.S.
Widespread bacterial lysine degradation proceeding via glutarate and L-2-hydroxyglutarate.
Nat. Commun.
9
5071-5071
2018
930552
Liu W.,Peterson P.E.,Carter R.J.,Zhou X.,Langston J.A.,Fisher A.J.,Toney M.D.
Crystal structures of unbound and aminooxyacetate-bound Escherichia coli gamma-aminobutyrate aminotransferase.
Biochemistry
43
10896-10905
2004
930553
Liu W.,Peterson P.E.,Langston J.A.,Jin X.,Zhou X.,Fisher A.J.,Toney M.D.
Kinetic and crystallographic analysis of active site mutants of Escherichia coli gamma-aminobutyrate aminotransferase.
Biochemistry
44
2982-2992
2005