KEGG   Candidatus Andeanibacterium colombiense: P0Y56_01025
Entry
P0Y56_01025       CDS       T09799                                 
Name
(GenBank) amidotransferase 1, exosortase A system-associated
  KO
K01953  asparagine synthase (glutamine-hydrolysing) [EC:6.3.5.4]
Organism
acob  Candidatus Andeanibacterium colombiense
Pathway
acob00250  Alanine, aspartate and glutamate metabolism
acob01100  Metabolic pathways
acob01110  Biosynthesis of secondary metabolites
acob01230  Biosynthesis of amino acids
Brite
KEGG Orthology (KO) [BR:acob00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00250 Alanine, aspartate and glutamate metabolism
    P0Y56_01025
 09180 Brite Hierarchies
  09181 Protein families: metabolism
   01002 Peptidases and inhibitors [BR:acob01002]
    P0Y56_01025
Enzymes [BR:acob01000]
 6. Ligases
  6.3  Forming carbon-nitrogen bonds
   6.3.5  Carbon-nitrogen ligases with glutamine as amido-N-donor
    6.3.5.4  asparagine synthase (glutamine-hydrolysing)
     P0Y56_01025
Peptidases and inhibitors [BR:acob01002]
 Cysteine peptidases
  Family C44
   P0Y56_01025
SSDB
Motif
Pfam: Asn_synthase GATase_7 GATase_6 DUF3700 NAD_synthase QueC
Other DBs
NCBI-ProteinID: WEK46899
UniProt: A0AAJ6BMX9
LinkDB
Position
219535..221445
AA seq 636 aa
MCGIAGIFHCSTPKPVDAARVERMTEALAHRGPDGSGVWTAPGVGLGHRRLSIIDVAGSP
QPMHSSDGRAAIVFNGEIYNYRELRRELRRELAAMGAKFRTDGDTEVILAAWQKWGPDCL
SRLHGMFAFALYDLADRTLFIARDRFGVKPLFMAHLSDGSLAFASELKGLLAHPLLRREA
DPLAIEDYLAWGYVPDHRSILKGVEKLPAGHYRLLRHDAAPAAPVRWWDISFAERHKGSE
ADLEAELLHHLREAVTSRMVSDVPLGAFLSGGVDSSSVVALMAEASREPVRTCSIGFDVA
SSDESSYAAEVAKLFGADHRSRRVGVDDFAEIDRLAAMFDEPFADASALPTWRVCQLARE
HVTVALSGDGADEAFAGYRRQVFQAHEDRVRGLLPAALRGPVFGALGALYPKADWAPRPL
RAKSTLLALAENGEEAYASALAVSPHGLRDSLYSPDLRGHLSGYRAEQPFIDTMRRAQAR
SGLDRAQYADLAFWLPGDILTKVDRTSMAVSLEAREPLLDHRLVEFAARLPEKMRVRGSQ
GKWLMKRTMRRYLPDNILYRPKQGFVTPIAEWLRGPLAGEARAIGSSATLARTGWFDGKR
ISRIAEDHISGRADHSRFLWQLLMLDRSLGRLGIAA
NT seq 1911 nt   +upstreamnt  +downstreamnt
atgtgcggcatcgccgggatcttccattgttcgacccccaagccggtcgatgccgcgcgc
gtcgagcggatgaccgaggcgctcgcccaccgcgggcctgacggttcgggcgtgtggacc
gcgccgggcgtcggcctcggccaccgccgcctgtcgatcatcgacgtcgccggatcgccc
cagccgatgcattcgtccgatgggcgcgccgcgatcgtgttcaacggcgagatatataat
taccgcgaattgcgccgcgaattgcgccgcgagttggcggcgatgggcgccaaattccgc
accgatggcgataccgaggtgatcctcgccgcatggcagaagtgggggccggattgcctc
tcgcgcctccacggcatgttcgccttcgcgctctacgatctggccgaccggacgttgttc
attgcccgcgaccgcttcggggtgaagccgttgttcatggcgcatctgagcgacggcagc
ctcgcctttgcgtcggaactgaagggactgctcgcccacccgctgctgcggcgcgaggcc
gatccgctggcgatcgaggattatctggcgtggggctatgtccccgatcaccgctcgatc
ctcaaaggggtcgaaaagctccctgccgggcactaccgcttgctgcgccacgatgccgcg
cccgccgcgccggtgcggtggtgggacatctcctttgcggagcgccacaaaggttccgaa
gccgatctcgaggcggagttgctccaccacctgcgcgaagcggtgacttcgcgcatggtc
tccgacgtcccgctcggcgcgttcctctcgggcggggtcgattcctccagcgtggtcgcg
ctgatggccgaggcgagccgcgagccggtgcggacctgttcgatcggcttcgacgtcgcg
agctcggacgagagcagctacgccgccgaggtcgcaaagctgttcggcgccgatcaccgc
agccgcagggtcggggtcgacgatttcgccgagatcgaccggcttgccgcgatgttcgac
gagcccttcgccgacgcctccgctctgccgacctggcgcgtgtgccaactcgcgcgcgag
catgtgacggttgcgctgtcgggcgacggcgcggacgaagccttcgccggctatcgccgc
caggtgttccaggcgcatgaggaccgggttcgcggattgctgccggcggcgttgcgcggc
cccgtgttcggggcgctcggcgcgctctatccgaaggcggactgggcgccgcgtcccttg
cgcgcgaagagcaccttgctcgcgctcgccgagaacggcgaggaggcctatgcctcggcg
ctcgcggtcagcccgcacggcctgcgcgacagcctctattcgccggatctgcgcggccat
ctttccggctaccgtgccgagcagccgttcatcgacacgatgcggcgggcgcaggcgcgc
tcgggcctcgaccgcgcacaatatgcagatttggccttctggctccctggcgatatcctg
accaaggtcgatcgcaccagcatggcagtaagccttgaggcgcgcgagccgctgctcgat
caccggctggtcgaattcgccgcccgcctgcccgagaaaatgcgcgtgcgcggcagccag
gggaagtggctgatgaagcggaccatgcgccgctatctgcccgacaacatcctctaccgc
ccgaagcagggcttcgtcactccgatcgcggagtggctgcgcgggccgctcgcgggcgag
gcgcgggcgatcggctcctccgccacgctcgcgcgcacgggctggttcgacggcaagcgc
atctccaggatcgccgaagaccacatctccgggcgggccgaccattcgcgattcctgtgg
cagttgctgatgcttgaccgttcactcggtcgcctaggtatcgcagcttag

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