KEGG   Burkholderia mallei 2000031063: DM57_10145
Entry
DM57_10145        CDS       T03522                                 
Name
(GenBank) omega amino acid--pyruvate aminotransferase
  KO
K00822  beta-alanine--pyruvate transaminase [EC:2.6.1.18]
Organism
bmai  Burkholderia mallei 2000031063
Pathway
bmai00280  Valine, leucine and isoleucine degradation
bmai00410  beta-Alanine metabolism
bmai00640  Propanoate metabolism
bmai01100  Metabolic pathways
Brite
KEGG Orthology (KO) [BR:bmai00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00640 Propanoate metabolism
    DM57_10145
  09105 Amino acid metabolism
   00280 Valine, leucine and isoleucine degradation
    DM57_10145
  09106 Metabolism of other amino acids
   00410 beta-Alanine metabolism
    DM57_10145
 09180 Brite Hierarchies
  09181 Protein families: metabolism
   01007 Amino acid related enzymes [BR:bmai01007]
    DM57_10145
Enzymes [BR:bmai01000]
 2. Transferases
  2.6  Transferring nitrogenous groups
   2.6.1  Transaminases
    2.6.1.18  beta-alanine---pyruvate transaminase
     DM57_10145
Amino acid related enzymes [BR:bmai01007]
 Aminotransferase (transaminase)
  Class III
   DM57_10145
SSDB
Motif
Pfam: Aminotran_3 Beta_elim_lyase
Other DBs
NCBI-ProteinID: AIW48348
LinkDB
Position
2:1208208..1209608
AA seq 466 aa
MRNIFIHSRIAAPTDMNAPTEPTAPDTTVRTDAEWLDAHWMPFTANRQFKRDPRIIVEGK
GAYYTAADGRQIFDGLSGLWCCGLGHGRAEISDAVARQVARLDYSPAFQFGHPQSFELAN
RIKAMTPAGLDYVFFTGSGSEAADTSLKLARAYWRAKGKGTKTRLIGREKGYHGVNFGGI
SVGGIGPNRKLFGQGIDADFLPHTQLPENRFSRGLPERGAELAERLLDLIALHDASNIAA
VIVEPFSGSAGVVVPPKGYLQRLREICTAHDILLIFDEVITGFGRTGAMTGAEAFGVVPD
IMNVAKQVTNGAQPLGAVIASKDVYDAFMAAGGPDYMLEFSHGYTYSAHPVACAAGVAAL
DLLVKEDALGRVRELAPYFEAAVHGLKGVRHVADIRNCGLAAGLTIEHAPGEPARRPYEI
AMHCWKNGFYVRYGGDTIQLAPPFIAEKREIDSLIGALNDALLATD
NT seq 1401 nt   +upstreamnt  +downstreamnt
atgcgcaacatcttcattcactcgcgcatcgccgcgccgaccgacatgaacgctccgacc
gaaccgaccgcccccgacacgaccgtgcgcaccgatgccgagtggctcgacgcgcactgg
atgccgttcacggcgaaccgccagttcaagcgcgacccgcgcatcatcgtcgaaggcaag
ggcgcctattacacggcggccgacggccgccagatcttcgacggcctgtccggcctctgg
tgctgcgggctcggccacggccgcgccgagatctcggatgcggtcgcgcgccaggtcgcg
cggctcgactattcgccggcgttccagttcggtcatccgcagtcgttcgagctcgcgaac
cggatcaaggcgatgacgcccgccggcctcgactacgtgttcttcacgggttcgggctcg
gaggcggccgacacgtcgctcaagctcgcgcgcgcgtactggcgcgcgaagggcaagggc
acgaagacgcgcctgatcggccgcgagaagggctatcacggcgtgaacttcggcggcatc
tcggtcggcgggatcgggccgaaccgcaagctgttcggccagggcatcgacgccgacttc
ctgccgcacacgcaactgcccgagaaccggttctcgcgcggtctgcccgagcgcggcgcc
gagctcgccgagcgcctgctcgatctgatcgcgctgcacgacgcgtcgaacatcgcggcg
gtgatcgtcgagccgttctccggctcggcgggcgtcgtcgtgccgccgaagggctatctg
cagcggctgcgcgagatctgcaccgcgcacgacatcctgctgatcttcgacgaggtcatc
acgggcttcggccgcacgggcgcgatgacgggcgccgaagcgttcggcgtcgtgccggac
atcatgaacgtcgcgaagcaggtgaccaacggcgcgcagccgctcggcgcggtgatcgcg
agcaaggacgtctacgacgcgttcatggcggcgggcggccccgactacatgctcgaattt
tcgcacggctacacgtattccgcgcatcccgtcgcgtgcgcggcgggcgtcgccgcgctc
gacctgctcgtcaaggaggacgcgctcggccgcgtgcgcgagctcgcgccgtatttcgag
gcggccgtgcacggcctgaagggcgtgcgccacgtcgccgacatccgcaactgcgggctg
gccgcgggcctcacgatcgagcatgcgccgggcgagcccgcgcggcgtccgtacgagatc
gcgatgcattgctggaagaacggcttctacgtgcgctacggcggcgacacgatccagctc
gcgccgccgttcatcgccgagaagcgcgagatcgacagtctgatcggcgcgctcaacgac
gcgctgctcgccaccgactga

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