Williamsia herbipolensis: OG579_05090
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Entry
OG579_05090 CDS
T09708
Name
(GenBank) GTP-binding protein
KO
K00956
sulfate adenylyltransferase subunit 1 [EC:
2.7.7.4
]
Organism
whr
Williamsia herbipolensis
Pathway
whr00230
Purine metabolism
whr00261
Monobactam biosynthesis
whr00450
Selenocompound metabolism
whr00920
Sulfur metabolism
whr01100
Metabolic pathways
whr01110
Biosynthesis of secondary metabolites
whr01120
Microbial metabolism in diverse environments
whr01320
Sulfur cycle
Module
whr_M00176
Assimilatory sulfate reduction, sulfate => H2S
whr_M00616
Sulfate-sulfur assimilation
Brite
KEGG Orthology (KO) [BR:
whr00001
]
09100 Metabolism
09102 Energy metabolism
00920 Sulfur metabolism
OG579_05090
09104 Nucleotide metabolism
00230 Purine metabolism
OG579_05090
09106 Metabolism of other amino acids
00450 Selenocompound metabolism
OG579_05090
09110 Biosynthesis of other secondary metabolites
00261 Monobactam biosynthesis
OG579_05090
Enzymes [BR:
whr01000
]
2. Transferases
2.7 Transferring phosphorus-containing groups
2.7.7 Nucleotidyltransferases
2.7.7.4 sulfate adenylyltransferase
OG579_05090
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Gene cluster
GFIT
Motif
Pfam:
GTP_EFTU
GTP-eEF1A_C
MMR_HSR1
GTP_EFTU_D2
Motif
Other DBs
NCBI-ProteinID:
WUM21182
UniProt:
A0AAU4K5A8
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All DBs
Position
1121943..1123277
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AA seq
444 aa
AA seq
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MTTTASPADTTGGHVENSDLLRIATAGSVDDGKSTLVGRLLFDTKSVLADQIDAVTRASV
DKGLDTPDLSLLVDGLRAEREQGITIDVAYRYFATPRRSFVLADTPGHVQYTRNTVSGAS
TAQLVILLVDARTGVVAQTRRHAAVMALLGVPRLVLAVNKIDLVDDAATVFAEISAEFAR
LTGTLGWDEADVQAIPVSALRGDNVAHRSALTDFYSGPTLIEHLESVPNVADRAPVGFRF
PVQYVIRPRTAEYLDYRGYAGQVAAGRVAVGDEVVVLPSGIRTTVSGIDTADGSLESAHT
GRSITVLLADDIDISRGDIIAAVADAPEPISSFTATVCWLGDKPLAPGARLLLKHGTLST
PAIVGSLDALFDEQDLSVHDSPERLELNQIGRITVQTAAPVAADDYLVNRETGSFLLIDP
QGGNTLAAGLVGDALAPLHLSALA
NT seq
1335 nt
NT seq
+upstream
nt +downstream
nt
atgaccaccaccgcctcccccgccgacaccaccggcgggcacgtcgagaactccgatctg
ctgcgcatcgcgaccgcgggcagcgtcgacgacggcaagtcgacactcgtcggccgcctg
ctgttcgacaccaaatcggttctggccgatcagatcgacgcggtcacacgcgcctcggtg
gacaagggactcgacacccctgacctgtcgctgctggtcgatggcctccgcgccgaacgc
gagcagggcatcaccatcgacgtggcctaccgctacttcgccacgccgcgacggtcgttc
gtgctggccgacacccccggtcacgtgcagtacacccgcaacaccgtgtcgggcgcgtcg
accgcacagctggtgatcctgctggtcgacgcgcgcaccggggtcgtcgcccagacgcga
cgccacgccgccgtcatggcactgctcggggttccccgactggtgttggcggtcaacaag
atcgacctcgtcgacgacgcggccacggtgttcgccgagatcagcgccgagttcgcccga
ctcaccggcaccctcggatgggacgaggcggacgtgcaggccatcccggtctcggccctg
cggggcgacaacgtcgcccaccggtcggcgctgaccgacttctacagcggcccgaccctc
atcgagcacctcgagtcggtaccgaacgtggccgaccgtgcgccggtgggcttccggttc
cccgtgcagtacgtcatccgtccccgcaccgccgagtacctcgactaccggggatacgcg
ggtcaggtcgccgccggtcgcgtggccgtcggcgacgaggtcgtggtgctgccgtcgggc
atccgcaccacggtgtcgggaatcgacaccgccgacggatcgctcgagtcggcccacacc
ggtcgcagcatcacggtgctgctcgccgacgacatcgacatctcgcgcggtgacatcatc
gccgcggtcgccgatgcgcccgaaccgatctcgtcgttcaccgcgacggtgtgctggctc
ggtgacaagccgctggcgccgggcgctcgtctgctgctcaagcacgggacactgtcgacg
ccggcgatcgtcgggtccctcgacgcgctgttcgacgagcaggatctgtcggtgcacgac
agcccggaacgcctcgagctcaaccagatcgggcggatcaccgtgcagacggccgctccg
gtcgcggccgacgactatctcgtcaaccgcgagaccggcagcttcctgctgatcgatccg
cagggcggcaacaccctcgccgccggtctcgtgggcgacgcactggcaccgctgcacctg
tccgccctggcgtga
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