Gimibacter soli: PH603_05605
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Entry
PH603_05605 CDS
T09793
Name
(GenBank) AMP-binding protein
KO
K20034
3-(methylthio)propionyl---CoA ligase [EC:
6.2.1.44
]
Organism
gso
Gimibacter soli
Pathway
gso00920
Sulfur metabolism
gso01100
Metabolic pathways
gso01120
Microbial metabolism in diverse environments
Brite
KEGG Orthology (KO) [BR:
gso00001
]
09100 Metabolism
09102 Energy metabolism
00920 Sulfur metabolism
PH603_05605
Enzymes [BR:
gso01000
]
6. Ligases
6.2 Forming carbon-sulfur bonds
6.2.1 Acid-thiol ligases
6.2.1.44 3-(methylthio)propionyl---CoA ligase
PH603_05605
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GFIT
Motif
Pfam:
AMP-binding
AMP-binding_C
Motif
Other DBs
NCBI-ProteinID:
WCL55231
UniProt:
A0AAF0BMZ4
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Position
1160907..1162484
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AA seq
525 aa
AA seq
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MQPYSLTLDKFLDHAAKWHPDAKVVTAREDGPATGVGYADLRRRAGRISTILAGLGIGHG
DHVATLAWNTQAHVEAWYAIMGMGAVCHTLNPRLTANQIASMLGQSKARVLIISADLQAL
ASQIAERATAIQHVLVIDGSTQGWHLGGASPDVTALEAEIEAATGEAEWGQFDENSPSGL
CFTSGTTGAPKGVSYTHRSSFLHTLRLLQADVLALRASDAVMPVVPMFHASAWGLPFAVP
AVGAKLVLPGRQADGASLAKLIVAEGVTIAVGVPTVWVGLIDHLEKTGGDVPSLERIIVG
GAPMPPALMARIEERLGVTIQTSWGMTELSPSGTFAPPADPDRKASVSGRPAIGVDLLLA
DAAGRPLAEQRGVEGHLKVRGAAVVERYFGFDEASTDEDGWFDTGDLARIDERGNLTITG
RAKDLIKSGGEWINPSEIEAVIGALPQVSLAAVIGRVDPKWGERPVLLVELREPDAMTDD
ELLKPLQGRVAPWWIPDAVVRLPQMPLASTGKIDKMRLREIYGGN
NT seq
1578 nt
NT seq
+upstream
nt +downstream
nt
atgcagccttactcgctgacgctcgataaatttctcgatcacgccgcaaaatggcacccc
gacgcaaaggtcgtgaccgcccgtgaagacgggccggcgaccggcgtggggtatgccgac
ctgcggcgccgggcagggcgtatttccacaatccttgcggggctcggtatcgggcacggc
gatcatgtggccacgcttgcctggaacacgcaggcgcatgtcgaggcatggtatgccatc
atggggatgggagcggtgtgccacacactgaacccgcgcctcacggccaaccagattgcc
tcgatgctcggccagtccaaggcacgggtgctgatcatcagcgctgacctgcaggcgctg
gcgagccagattgccgaacgtgccacagccatccagcatgtgttggtgatcgatggttcg
acgcagggttggcacctaggtggcgcaagcccggacgtgaccgcgctggaagccgaaatc
gaagcggcaacgggcgaggctgaatgggggcagtttgatgaaaacagcccgtccggcctt
tgcttcacatccggcacaacgggcgcgccgaagggcgtgagctatacccaccggtcgagc
ttcctgcacacattgcgcctgctgcaggctgacgtgctggccttgcgggcctctgacgcc
gtgatgccggttgtgccgatgttccacgccagcgcatggggcttgccgtttgcggtgccg
gcggtgggggccaagctcgtgctgcccggccggcaggccgacggggcgagtctcgccaaa
ctcattgtcgccgaaggggtgacgattgccgtaggcgtgccgactgtttgggtggggctc
atcgatcatctggaaaagaccggcggcgatgtgccgagccttgagcggatcatcgtgggc
ggcgccccgatgccgcccgccctgatggcgcggatcgaggaacggctgggcgtgacgatc
cagacaagctggggcatgaccgagctgtcgccgtccggcaccttcgcgccgcccgctgac
cctgatcgcaaggcgtctgtctcaggccgccccgccatcggcgtggacctgctgctggct
gacgctgccgggcgtccgctggccgagcagcgcggtgtggaagggcatttgaaggtgcgg
ggcgcggctgtcgttgaacgctatttcggctttgatgaagcgtcgaccgatgaagacggc
tggtttgatactggcgatctcgcgcggattgatgagcgcggcaacctgacgatcaccggc
cgcgccaaggacctgatcaaatcaggcggcgaatggatcaatccttccgagatcgaggcg
gtgatcggtgcgctgccgcaggtgtcgcttgcggctgttatcggccgggttgaccccaaa
tggggggagcgaccggtgctcttggtagagctgcgcgagccggatgcgatgacggacgac
gagcttctgaaaccgctgcaaggccgtgtcgccccctggtggatacccgatgcggtggtg
cgcctgccgcagatgccgctggcatctaccggtaaaatagacaaaatgcgccttagagag
atatatggcggtaactag
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