KEGG   Uruburuella suis: LVJ78_05830
Entry
LVJ78_05830       CDS       T08067                                 
Name
(GenBank) GTP-binding protein
  KO
K00956  sulfate adenylyltransferase subunit 1 [EC:2.7.7.4]
Organism
usu  Uruburuella suis
Pathway
usu00230  Purine metabolism
usu00261  Monobactam biosynthesis
usu00450  Selenocompound metabolism
usu00920  Sulfur metabolism
usu01100  Metabolic pathways
usu01110  Biosynthesis of secondary metabolites
usu01120  Microbial metabolism in diverse environments
usu01320  Sulfur cycle
Brite
KEGG Orthology (KO) [BR:usu00001]
 09100 Metabolism
  09102 Energy metabolism
   00920 Sulfur metabolism
    LVJ78_05830
  09104 Nucleotide metabolism
   00230 Purine metabolism
    LVJ78_05830
  09106 Metabolism of other amino acids
   00450 Selenocompound metabolism
    LVJ78_05830
  09110 Biosynthesis of other secondary metabolites
   00261 Monobactam biosynthesis
    LVJ78_05830
Enzymes [BR:usu01000]
 2. Transferases
  2.7  Transferring phosphorus-containing groups
   2.7.7  Nucleotidyltransferases
    2.7.7.4  sulfate adenylyltransferase
     LVJ78_05830
SSDB
Motif
Pfam: GTP_EFTU GTP-eEF1A_C GTP_EFTU_D2 MMR_HSR1 Ras ATP_bind_1 Vps54_N
Other DBs
NCBI-ProteinID: UOO80511
UniProt: A0AAE9GWV3
LinkDB
Position
complement(1309540..1310850)
AA seq 436 aa
MTQSTAPLLRFITAGSVDDGKSTLIGRLLYDSRTLLSDQADKLAQSAANGQAPDFAGLTD
GLAAEREQGITIDVAYRYFATAKRKFIIADTPGHEQYTRNMVTGASTADAAIVLIDATRV
DFSGSSPALLPQTRRHSAILKLLGTPHIIVAVNKLDLLDFDEQKYRAITEAYRTLAAQIG
LAAQIHYLPVSALAGDNIVAASAHTPWYRGLPLLPLLESLPVERSRAARLSAHFPVQRVA
RQDGSSSDDFRGYQGRLEAGRLSVGDEIRVQPSGKSARIAAIYTPQGEARSAEAGSALTL
TLDSDVDISRGDSILAANNPALPTRHIQASVCWFDERALNPQRKYLLKHGTQTTAAKVKQ
IAYVWDVHTLSNVKAAEKLAINDIGSLSLALQQPLTATTYAENPATGAFILIDEASHHTV
AAGMITATHERSDFDI
NT seq 1311 nt   +upstreamnt  +downstreamnt
atgacccaatccaccgcccccctgctccgttttatcaccgccggcagcgttgacgacggc
aaatccaccctgatcggccgcctgctctacgacagccgcacgctcttgagcgaccaagcc
gacaagctcgcgcaatccgccgccaacggccaagcgcccgactttgccggtctcaccgac
ggcctcgccgccgagcgcgagcaaggcatcaccattgatgtggcctaccgctatttcgcc
accgccaaacgcaaattcatcatcgccgacactcccggccacgagcaatacacccgcaat
atggtcaccggcgcatccaccgccgacgctgccattgtgctgattgatgccacccgcgtc
gatttttccggcagcagccccgccttattgccgcaaacccgccgccacagcgccatcttg
aagcttttgggcacgccgcacatcattgtggccgtcaacaagctcgatttgcttgatttc
gatgaacaaaaataccgcgccatcaccgaggcctaccgcacgctcgctgcgcaaatcggc
ctagccgcacaaatccactacctgcccgtgagcgcattggccggcgacaatatcgtggcc
gccagcgcacacacgccgtggtatcgcggcctgccgcttttgccgctgcttgaaagccta
ccggtggaacgcagccgcgccgcccgtttgagcgcccattttcccgtgcagcgcgtggcc
cgccaagacggcagcagcagcgacgatttccgcggctaccaaggccgcctcgaagccggc
cgcttgagcgtgggcgacgaaatccgcgtgcagccctcaggcaaaagcgcccgcatcgcc
gccatctacaccccgcaaggcgaagcccgaagcgccgaagccggcagcgccctcaccctc
acgctcgacagcgatgtcgacatctcgcgcggcgacagcattctggccgccaacaatccc
gccctgcccacccgccacattcaggcatcggtgtgctggtttgacgagcgcgcgctcaac
ccgcagcgcaaatacctgctcaaacacggcacgcaaaccaccgccgccaaagtgaagcaa
atcgcctatgtgtgggatgtgcacacactgagcaacgtgaaagccgccgaaaagctcgcc
atcaacgacatcggcagcctcagccttgccctgcaacagccgctcaccgccaccacctat
gccgaaaaccccgccaccggtgcctttatcctgattgatgaagccagccaccacaccgta
gccgccggcatgatcaccgccacccacgagcgcagcgatttcgatatttaa

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