Brenneria goodwinii: AWC36_19310
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Entry
AWC36_19310 CDS
T05061
Name
(GenBank) argininosuccinate synthase
KO
K01940
argininosuccinate synthase [EC:
6.3.4.5
]
Organism
bgj
Brenneria goodwinii
Pathway
bgj00220
Arginine biosynthesis
bgj00250
Alanine, aspartate and glutamate metabolism
bgj01100
Metabolic pathways
bgj01110
Biosynthesis of secondary metabolites
bgj01230
Biosynthesis of amino acids
Module
bgj_M00844
Arginine biosynthesis, ornithine => arginine
Brite
KEGG Orthology (KO) [BR:
bgj00001
]
09100 Metabolism
09105 Amino acid metabolism
00250 Alanine, aspartate and glutamate metabolism
AWC36_19310
00220 Arginine biosynthesis
AWC36_19310
09180 Brite Hierarchies
09183 Protein families: signaling and cellular processes
04147 Exosome [BR:
bgj04147
]
AWC36_19310
Enzymes [BR:
bgj01000
]
6. Ligases
6.3 Forming carbon-nitrogen bonds
6.3.4 Other carbon-nitrogen ligases
6.3.4.5 argininosuccinate synthase
AWC36_19310
Exosome [BR:
bgj04147
]
Exosomal proteins
Exosomal proteins of other body fluids (saliva and urine)
AWC36_19310
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Ortholog
Paralog
GFIT
Motif
Pfam:
Arginosuc_syn_C
Arginosuc_synth
QueC
Endonuc-dimeris
Motif
Other DBs
NCBI-ProteinID:
ATA26090
UniProt:
A0A0G4JTS0
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All DBs
Position
4427280..4428626
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AA seq
448 aa
AA seq
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MTTILKHLPVGQRIGIAFSGGLDTSAALLWMRQKGAVPYAYTANLGQPDEDDYDAIPRRA
MEYGAENARLIDCRKQLVAEGIAAIQCGAFHNTTAGVTYFNTTPLGRAVTGTMLVAAMKE
DGVNIWGDGSTYKGNDIERFYRYGLLTNAELQIYKPWLDTDFIDELGGRQEMSEFMAQAG
FDYKMSAEKAYSTDSNMLGATHEAKDLEFLNSSVKIVNPIMGVKFWDENVKIAAEEVTVR
FDRGHPVALNGKTFADDVELMMEANRIGGRHGLGMSDQIENRIIEAKSRGIYEAPGMALL
HIAYERLLTGIHNEDTIEQYHANGRQLGRFLYQGRWFDSQALMLRDSSQRWIASAITGEV
TLELRRGNDYSILNTVSDNLTYKPERLTMEKGDSVFSPDDRIGQLTMRNLDITDTREKLF
NYVETGLLSSSSNAGLPQVEQLQDKSQK
NT seq
1347 nt
NT seq
+upstream
nt +downstream
nt
atgacaacgattctcaaacatcttccggttggtcagcgtattggtattgcgttttctggt
ggtctggataccagcgccgcgctgctttggatgcgtcaaaaaggcgcggttccttatgct
tacaccgcgaatctgggtcagccggatgaggatgattacgatgcaatccctcgccgtgcg
atggaatacggcgctgaaaatgctcgcctgatcgactgccgtaagcaactggttgccgaa
ggcatcgcggcaattcagtgcggcgccttccataacaccaccgccggcgtgacctatttc
aacaccacgccgctgggccgtgcggtaaccggcaccatgctggtcgccgcgatgaaagaa
gacggcgtcaatatctggggcgacggcagcacctataaaggcaacgatatcgaacgcttc
tatcgttacggtttgctgaccaacgccgagctgcaaatctacaaaccctggctggatacc
gactttatcgatgagctgggcggccgtcaggagatgtccgaatttatggcgcaggccggt
tttgattacaaaatgtccgccgaaaaagcctactccaccgactccaacatgctgggcgcg
acccacgaagccaaagatctggagttcctcaattccagcgtcaaaatcgttaacccgatc
atgggcgttaaattctgggatgaaaacgtgaaaatcgccgcggaagaagtcaccgtgcgt
tttgatcgcggccatccggtggcgctgaatggcaaaacctttgccgatgacgtggaactg
atgatggaagccaaccgtattggcggacgccacggcttaggcatgagcgatcagattgaa
aaccgcatcatcgaagcgaaaagccgcggtatctacgaagcgccgggaatggcgttgctg
catatcgcctatgagcgcctgctgaccggtatccataacgaagacaccatcgaacagtat
cacgccaacggccgtcaactggggcgcttcctgtaccagggccgctggttcgattctcag
gcgctgatgctgcgtgattcttcccagcgttggatcgccagcgccatcaccggcgaagtg
acgctggaactgcgtcgcggcaacgactattccattttgaataccgtttccgataacctg
acctataaaccagagcgtctgacgatggagaaaggcgattccgtattctcgccggatgac
cgtatcggccagctgaccatgcgtaacctggacatcaccgatacccgtgaaaaactgttt
aactatgttgaaaccgggttgctctcttcttcttccaacgccggattaccgcaggttgag
cagttgcaggacaagagccaaaagtaa
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