Burkholderia sp. PAMC 26561: AXG89_09570
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Entry
AXG89_09570 CDS
T05481
Name
(GenBank) sulfate adenylyltransferase
KO
K00956
sulfate adenylyltransferase subunit 1 [EC:
2.7.7.4
]
Organism
bum
Burkholderia sp. PAMC 26561
Pathway
bum00230
Purine metabolism
bum00261
Monobactam biosynthesis
bum00450
Selenocompound metabolism
bum00920
Sulfur metabolism
bum01100
Metabolic pathways
bum01110
Biosynthesis of secondary metabolites
bum01120
Microbial metabolism in diverse environments
bum01320
Sulfur cycle
Module
bum_M00176
Assimilatory sulfate reduction, sulfate => H2S
bum_M00616
Sulfate-sulfur assimilation
Brite
KEGG Orthology (KO) [BR:
bum00001
]
09100 Metabolism
09102 Energy metabolism
00920 Sulfur metabolism
AXG89_09570
09104 Nucleotide metabolism
00230 Purine metabolism
AXG89_09570
09106 Metabolism of other amino acids
00450 Selenocompound metabolism
AXG89_09570
09110 Biosynthesis of other secondary metabolites
00261 Monobactam biosynthesis
AXG89_09570
Enzymes [BR:
bum01000
]
2. Transferases
2.7 Transferring phosphorus-containing groups
2.7.7 Nucleotidyltransferases
2.7.7.4 sulfate adenylyltransferase
AXG89_09570
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Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
GTP_EFTU
GTP-eEF1A_C
GTP_EFTU_D2
MMR_HSR1
Ras
SRPRB
ATP_bind_1
FeoB_N
Motif
Other DBs
NCBI-ProteinID:
AME24059
UniProt:
A0A125SGS1
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All DBs
Position
1:2086732..2088054
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AA seq
440 aa
AA seq
DB search
MSIHQPEDLGVLRFITAGSVDDGKSTLIGRLLFDSKAVLSDQLSALSRAKNKRTVGDEID
LSLLTDGLEAEREQGITIDVAYRYFATAKRKFIIADTPGHEQYTRNMVTGASTAHAAIIL
VDATRVTFKDGVAQLLPQTVRHSAIVKLLGLQHVIVAINKMDLIDFSESRFNEIRDAYVE
LARRLNISNVRFVPVSALKGDNIVTASERMPWYAGEPLLDLLEALPVAQPVEQALRFPVQ
WVARQDGNKADDFRGYMGRVESGEVKLGDSITVLPANRDATVAEIIAPVPGGVGQVDRAF
AGQTVTIRLAEDIDVSRGDTFVPRNATGVKVEPAKKLDADLCWFDEEPLSPQRKYLLKQT
TNTVFARIGAIKEVLDVHTLLHSVDRRDLNMNDIGRVALTLQKPIVCDAYDTHQGTGAFV
LIDEATHHTVAAGMIRSFSA
NT seq
1323 nt
NT seq
+upstream
nt +downstream
nt
atgagcattcatcaacccgaagacctcggcgtgttgcgcttcatcaccgcaggcagtgtg
gacgacggcaagagcacgctgatcggccgcttgctgttcgacagcaaggcggtgttgtcg
gatcagttgtcggcgttgtcgcgcgcgaagaacaagcgcaccgtcggcgatgaaatcgac
ctgtcgctgctgaccgacggcctcgaagccgagcgcgagcagggcatcaccatcgacgtg
gcataccgctatttcgcgacggcgaagcgcaagttcatcatcgccgatacccccggacac
gagcagtacacgcgcaacatggtgacgggcgcatccacggcgcatgccgcgatcattctc
gtggacgccacgcgcgtcacgttcaaggacggcgttgcgcaattgctgccgcagaccgtg
cgtcatagcgcgatcgtcaagttgctcgggctgcagcacgtgatcgtcgcgatcaacaag
atggacctgatcgacttcagcgagtcgcgtttcaacgagatccgcgatgcttatgtcgag
ctcgcgcgccggctcaatatcagcaatgtgcgcttcgtgccggtatcggcgttgaagggc
gacaacatcgtgaccgccagcgaacgcatgccgtggtacgcgggcgaaccgctgctcgat
ctgctcgaagcattgccggtagcgcagcctgtcgagcaggcgctgcgctttccggtgcaa
tgggtcgcgcgtcaggacggcaacaaggccgacgatttccgcggttacatggggcgcgtg
gagtcgggcgaagtaaagctcggcgattccatcaccgtgctgcccgccaaccgggatgcc
acggtggccgagatcattgcgccggtgccgggcggtgtcgggcaagtagatcgcgcgttc
gcgggccagacggtgaccatccgccttgccgaagatatcgatgtctcgcgcggcgatacg
ttcgtgccgcgcaacgcgaccggcgtgaaggtggagccggcgaaaaagctcgatgccgac
ctttgctggttcgacgaagaaccgctttcaccgcaacgcaagtacttgctcaagcagacc
acgaacacggtgttcgcgcggatcggtgcgatcaaggaagtgctggacgtgcatacgctg
ttgcattcggttgatcgtcgtgatctgaacatgaacgacatcggccgcgtggcgctgacg
ctgcaaaagccgatcgtctgcgatgcctacgatacgcatcagggtaccggcgcgttcgtt
cttatcgatgaagcgacgcatcacacggttgcggccgggatgattcgctcgttctcagcc
tga
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