KEGG   Dyella sp. GSA-30: DYGSA30_30050
Entry
DYGSA30_30050     CDS       T10269                                 
Symbol
avtA
Name
(GenBank) GntR family transcriptional regulator
  KO
K16423  (S)-3,5-dihydroxyphenylglycine transaminase [EC:2.6.1.103]
Organism
dyg  Dyella sp. GSA-30
Pathway
dyg00261  Monobactam biosynthesis
dyg01055  Biosynthesis of vancomycin group antibiotics
dyg01100  Metabolic pathways
dyg01110  Biosynthesis of secondary metabolites
Brite
KEGG Orthology (KO) [BR:dyg00001]
 09100 Metabolism
  09109 Metabolism of terpenoids and polyketides
   01055 Biosynthesis of vancomycin group antibiotics
    DYGSA30_30050 (avtA)
  09110 Biosynthesis of other secondary metabolites
   00261 Monobactam biosynthesis
    DYGSA30_30050 (avtA)
 09180 Brite Hierarchies
  09181 Protein families: metabolism
   01008 Polyketide biosynthesis proteins [BR:dyg01008]
    DYGSA30_30050 (avtA)
Enzymes [BR:dyg01000]
 2. Transferases
  2.6  Transferring nitrogenous groups
   2.6.1  Transaminases
    2.6.1.103  (S)-3,5-dihydroxyphenylglycine transaminase
     DYGSA30_30050 (avtA)
Polyketide biosynthesis proteins [BR:dyg01008]
 Nonribosomal peptide tailoring proteins
  Aminotransferase
   DYGSA30_30050 (avtA)
SSDB
Motif
Pfam: Aminotran_1_2 Asp_aminotransf
Other DBs
NCBI-ProteinID: BDU21548
LinkDB
Position
complement(3488876..3490165)
AA seq 429 aa
MAAPNNASVMNFLNEVAESYPTAVSLAAGRPGDRLFDGTSTESLNRWLSRFLGTAPLSSV
LQYGRTAGLVHELVSRQIANDDGVNAGAHRTIVTAGCQEALALCLPELCPQANDVVLVRN
PTYIGITGAAAATSVALYPLDGSVEGIDAQIEKAVEELAADGRRARVVYLIPDFDNPTGE
VIPVQERLAILAACERHRIVVLEDNPYGMFRYEGSMVPAMASLDTAGCVIYLSTYSKTIA
PALRVGAATLPETLFGDRAARVSLFNGIAERKSFVTVNTSQLCQAIVGGLLIERDCSLRS
WLGPTLDAYRHSRDTMLAQLDQSFSPAGFPVHWNKPQGGFFLSLDVPISFDAEAVADCAT
RDGVIVLPMAFFAFDQTQNRRIRLAFSAESPDRIRAGVAALSRFIVRRVEKHAAPEHGTG
KRIPEAATE
NT seq 1290 nt   +upstreamnt  +downstreamnt
atggcagcgccaaataacgcctctgtcatgaactttttgaacgaagttgccgagtcgtat
ccgacggccgtctcgctggctgcaggacggccaggagaccgcttgttcgatgggacgagc
acggagtccttgaatcgctggctttcgaggtttctcggcactgctccgttgtcgagcgtg
ctgcagtacggccgcacagcgggcttggtgcatgagcttgtttccaggcagatcgccaac
gacgacggcgtaaatgccggtgcccatcgcacgatcgttacggcgggatgccaggaggca
ctggcactgtgtctcccggagctgtgcccgcaagcgaatgatgtcgtgctggtgcgtaac
ccgacttacatcggcatcacgggtgcggcggcagccacgtcggtcgcgctgtatccgctc
gatggctcggtcgagggcatcgacgcacagattgaaaaggcggtcgaggaactggcggca
gacgggcgacgcgcaagagtcgtctatctcattccggactttgacaatccaaccggcgag
gtcatccctgtccaagagcgcctggccatactggccgcgtgtgaacgtcaccgcattgtt
gtgcttgaagacaatccctacggcatgttccgttacgaaggcagcatggtacccgccatg
gcctcactcgatacggccggttgcgtaatctacctgtcgacctattcgaagaccattgcg
ccggcgctacgcgtgggcgccgccacgcttccggagaccctgttcggcgatcgtgctgca
cgagtatcgctgttcaatggcattgcggagcgcaagagtttcgttacggtcaacaccagc
caactatgccaggcgatcgttggcggcctgcttatcgagcgcgattgcagtctccgttca
tggcttggccccaccttggacgcgtatcgacacagccgagacacgatgctcgcacaactg
gatcagagcttttcaccggcaggctttcccgtgcactggaacaagccgcagggcggtttt
ttcctgagcctggatgtaccgataagcttcgacgcggaggcggtcgccgattgcgccaca
cgcgatggcgtcattgtgctgccgatggctttttttgccttcgaccagacacagaaccgg
cgcattcgtcttgcattcagtgcggaaagccccgatcgcattcgcgcaggcgttgccgcg
ctgtctcggttcattgtgcgccgagtggaaaaacatgccgcgcccgagcacggaacgggg
aagcgaataccggaagcggcgaccgaatag

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