KEGG   Bradyrhizobium xenonodulans: I3J27_15695
Entry
I3J27_15695       CDS       T09324                                 
Symbol
glsA
Name
(GenBank) glutaminase A
  KO
K01425  glutaminase [EC:3.5.1.2]
Organism
bxn  Bradyrhizobium xenonodulans
Pathway
bxn00220  Arginine biosynthesis
bxn00250  Alanine, aspartate and glutamate metabolism
bxn00470  D-Amino acid metabolism
bxn01100  Metabolic pathways
bxn02020  Two-component system
Brite
KEGG Orthology (KO) [BR:bxn00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00250 Alanine, aspartate and glutamate metabolism
    I3J27_15695 (glsA)
   00220 Arginine biosynthesis
    I3J27_15695 (glsA)
  09106 Metabolism of other amino acids
   00470 D-Amino acid metabolism
    I3J27_15695 (glsA)
 09130 Environmental Information Processing
  09132 Signal transduction
   02020 Two-component system
    I3J27_15695 (glsA)
Enzymes [BR:bxn01000]
 3. Hydrolases
  3.5  Acting on carbon-nitrogen bonds, other than peptide bonds
   3.5.1  In linear amides
    3.5.1.2  glutaminase
     I3J27_15695 (glsA)
SSDB
Motif
Pfam: Glutaminase cNMP_binding STAS STAS_2
Other DBs
NCBI-ProteinID: WBL81786
LinkDB
Position
complement(3401489..3403336)
AA seq 615 aa
MKPLSPLASAWTRSKPPLLRFLDNCLNEFSAETSGAVADYIPELSKADPAYFGISLATLD
GHVYEVGDSRVPFTIQSMSKPFVFALALDLLGAGKVESAIGVEPSGDPFNSIRLNSENHP
FNPMVNAGAIACTGLIYDSKGSDAFEQIRLALGRFAGRDLAVDEAVYASESQTGDRNRAI
GYLLKTNAVISDNVAGVLDVYFRQCAVLVTARDIAVMAATLANRGINPVTGEQVLTPYAI
SRTLSVMTSSGMYDYAGEWIYRIGIPAKSGVGGGILAALPARLGLGSYSPKLDKHGNSVR
GIKVCEALSSHYDLHMLNRSDDARNAVIADYDIGKSPSRRVRRQQEREILAAHEQEVRVI
ELVGTLSLSAVDYVSRRLAGRPRPQFVIFDLHRVTSTTRAGARLVAEAFEELAALNVTVV
LSGVRRASKEWNTLREWTAELKNVRDFYLLDTAIEWAEDQIVYRYGGSIDFHETTELAEQ
PLLSGMTEEELTDLASICTIRTYRSGTKIITTGDPADSLFFLRSGAVHVTLPDGVRLATL
TAGMAFGEMALLEATRSADVFADMAATAFEVPLKDFERFRKQHPRASERIMRNLAQLLAD
RLIVANAKVDILTST
NT seq 1848 nt   +upstreamnt  +downstreamnt
atgaaaccgctctcgcctctcgcctccgcctggacccgctcgaaaccgcctttgctgcgg
tttctggacaattgcctcaacgaattctccgccgagacctcaggcgcggtcgccgactac
attcccgagctgagcaaagccgaccctgcctatttcggcatcagcctcgcgacactggac
ggccatgtctacgaggtcggcgactccagggtgcccttcaccatccagtcgatgtcgaag
ccgttcgtgttcgcgctggcgctggacctgctcggtgcaggcaaggtcgagagcgcgatc
ggcgtcgaaccctcgggcgatcccttcaactcgatccggctcaattccgagaaccatccg
ttcaacccgatggtcaatgccggcgcgatcgcctgcaccgggctgatctacgacagcaag
ggctcggatgccttcgagcagatccggcttgcgctcggccgctttgcgggacgcgacctc
gccgtggacgaggctgtctacgcctccgaaagccagaccggcgaccgcaaccgcgccatc
ggttatctgctcaagaccaacgcggtgatctcggacaatgtcgccggcgtcctcgacgtc
tatttccggcagtgcgcggtgctggtcaccgcgcgcgacatcgcggtgatggcggcgacg
ctcgccaaccgcggcatcaatccggtgacgggcgaacaggtgctgacgccttacgcgatc
tcgcgcacgctctcggtgatgacctcgtcaggcatgtacgactatgccggcgaatggatc
taccggatcggcatccccgccaagagcggcgtcggcggcggcattttggcagcgctccct
gcccgcctcggcctcggcagctattcgcccaagctcgacaagcacggcaacagcgtgcgc
ggcatcaaggtctgcgaagccctgtcctcgcattacgatttgcacatgctcaaccgcagc
gacgacgcccgcaacgccgtcatcgccgactacgacatcggcaagagcccgtcgcgacgt
gtccgccggcagcaggagcgcgagatcctggcggcgcatgagcaggaggtgcgtgtcatc
gagctggtcggtacgctgtcgctgtcggcggtcgactatgtttcacggcggctggcggga
cggccgcgaccgcaattcgtgatcttcgatctgcaccgcgtcacctccaccacccgcgcc
ggcgcgcgactcgtcgccgaagcgttcgaggagctggcggcgctgaacgtcaccgtggtg
ctgtcgggcgtcaggcgggcgtccaaagagtggaacacgttgcgggaatggaccgcggag
ctgaaaaacgtccgcgacttctacctgctcgacaccgcgatcgaatgggccgaagaccag
atcgtctaccgctatggcggctcgatcgattttcacgagaccaccgagcttgccgagcag
ccgctgctatcaggcatgaccgaggaagagctgaccgacctcgcctcgatctgcacgatc
aggacctatcggtccggcacgaagatcatcacgacaggcgatcctgccgattccctgttc
ttcctgcgcagcggcgcggtccatgtgacgttgccggacggcgtcaggctggcgacgctc
accgccggcatggccttcggcgagatggcgctgctggaggcgacgcgctcggccgatgtg
tttgccgacatggcggcgacggcgttcgaagtccccctgaaagatttcgaacgtttccgc
aagcagcacccgcgcgccagcgagcgcatcatgcgcaatctcgcccagttgctcgccgat
cgcctgatcgtcgccaacgccaaggtggatatcctgacctcgacgtga

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