Gordonia terrae: BCM27_10105
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Entry
BCM27_10105 CDS
T04440
Name
(GenBank) glutaminase A
KO
K01425
glutaminase [EC:
3.5.1.2
]
Organism
gta
Gordonia terrae
Pathway
gta00220
Arginine biosynthesis
gta00250
Alanine, aspartate and glutamate metabolism
gta00470
D-Amino acid metabolism
gta01100
Metabolic pathways
gta01110
Biosynthesis of secondary metabolites
gta02020
Two-component system
Brite
KEGG Orthology (KO) [BR:
gta00001
]
09100 Metabolism
09105 Amino acid metabolism
00250 Alanine, aspartate and glutamate metabolism
BCM27_10105
00220 Arginine biosynthesis
BCM27_10105
09106 Metabolism of other amino acids
00470 D-Amino acid metabolism
BCM27_10105
09130 Environmental Information Processing
09132 Signal transduction
02020 Two-component system
BCM27_10105
Enzymes [BR:
gta01000
]
3. Hydrolases
3.5 Acting on carbon-nitrogen bonds, other than peptide bonds
3.5.1 In linear amides
3.5.1.2 glutaminase
BCM27_10105
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Motif
Pfam:
Glutaminase
STAS
STAS_2
Motif
Other DBs
NCBI-ProteinID:
ANY25980
UniProt:
A0A2I1R1P5
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All DBs
Position
2232349..2233782
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AA seq
477 aa
AA seq
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MESLVDGYFSHIMNECRSDHGGAVADYIPELSAVDPNGYALSLCVHDGHTYSHGDTATAF
TIQSVSKPLTYAMALQKHGAVAVDAKIGVEPSGEAFNEISVDDRRRPKNPMINAGAIFAA
SMLLPPMDTVDEAAVAAAFAEVLEFYSGCAGRRLTMDEDVYASESATGSRNRAIAYMLDS
FGALETSPDAALDLYYRQCSIRVTTDDLAGIGATIANGGVNPRTGRSVFSGETAQRLLSV
MTTCGMYDGAGDWVTTVGLPAKSGVGGGILAVLPGQLGIGVYSPRLDEHGNSVRGVQVCR
SLSKDLGLHMFNVTRESRVTIRSVYDLSDTSVGAEWSERERSYLRTCRDTIRVYELQGDL
TFAGAESVHRRLEADMNQYTVVIVEISRIGVIDAVARTMVLSMKRRLDQTGRRAMLVDPD
GVVRASVDRHRNDTALPDLDAPQELQGFDPALPHVHSTMGDAITDAETFLLKHYYDR
NT seq
1434 nt
NT seq
+upstream
nt +downstream
nt
atggagtccctcgtcgacggatatttcagccacatcatgaacgagtgccgatcggatcat
gggggtgcggtggcggactacatcccggaactgtctgcggtggacccgaacgggtatgcg
ctgtccctctgtgtgcacgatggacacacctactcgcacggcgacacggccacggcgttc
accatccagtcggtgtcgaagccgctcacgtacgcgatggcgttgcagaagcacggtgcg
gtcgcagtggacgcgaaaatcggcgtcgaaccgtcgggggaggcgttcaacgagatcagc
gtcgacgaccggcgccggccgaagaatccgatgatcaacgccggcgcgatcttcgcggcg
tcgatgctgttgccgccgatggacaccgtcgacgaggccgcggtggcggcggcgttcgcc
gaggtgctcgagttctactccgggtgtgccggtcgacgactgacgatggacgaggacgtc
tatgcctcggagtcggccaccggatcgcgcaaccgggcgatcgcctacatgctcgacagc
ttcggggcgctcgagaccagtcccgacgccgcgctcgacctgtactaccggcagtgctcg
attcgcgtgaccaccgacgatctcgccggaatcggagccaccatcgccaacggtggggtg
aacccgcgtaccggccgttcggtgttctccggtgagacggcgcaacgccttctcagtgtc
atgaccacctgcggcatgtacgacggtgcgggtgactgggtcaccacggtcggcctgccg
gccaagagcggcgtcggcggcggcatcctcgcggtcctgccgggccagctcggcatcggg
gtgtactcaccccgcctcgacgagcacggcaacagcgtccgcggagtccaggtgtgccgt
tcgttgtcgaaggatcttggactgcacatgttcaacgtgaccagggagagccgggtgaca
atccggtcggtctacgacctctcggacacatccgtgggagcggagtggagcgagcgggag
cgcagctatctgcggacctgccgcgacaccatacgggtatacgaactccagggtgatctg
actttcgccggagccgagagcgtgcatcgccgtctggaagccgacatgaaccagtacacc
gtggtgatcgtcgagatctcgcggatcggggtgatcgacgccgtcgcccgcaccatggtc
ctgagcatgaagcggcggctagaccagaccggtcgacgggcgatgctcgtcgaccccgac
ggggtggtgcgagccagtgtggaccgccaccgcaacgacacggcgttgcccgatctcgat
gcgccgcaagaactccagggtttcgatccggcgctaccgcacgtgcactcgaccatgggc
gacgcgatcaccgacgccgagacgttcttgctcaagcactattacgaccggtga
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