KEGG   Gordonia jinghuaiqii: H1R19_15375
Entry
H1R19_15375       CDS       T07538                                 
Name
(GenBank) 50S ribosome-binding GTPase
  KO
K00956  sulfate adenylyltransferase subunit 1 [EC:2.7.7.4]
Organism
gji  Gordonia jinghuaiqii
Pathway
gji00230  Purine metabolism
gji00261  Monobactam biosynthesis
gji00450  Selenocompound metabolism
gji00920  Sulfur metabolism
gji01100  Metabolic pathways
gji01110  Biosynthesis of secondary metabolites
gji01120  Microbial metabolism in diverse environments
gji01320  Sulfur cycle
Module
gji_M00176  Assimilatory sulfate reduction, sulfate => H2S
Brite
KEGG Orthology (KO) [BR:gji00001]
 09100 Metabolism
  09102 Energy metabolism
   00920 Sulfur metabolism
    H1R19_15375
  09104 Nucleotide metabolism
   00230 Purine metabolism
    H1R19_15375
  09106 Metabolism of other amino acids
   00450 Selenocompound metabolism
    H1R19_15375
  09110 Biosynthesis of other secondary metabolites
   00261 Monobactam biosynthesis
    H1R19_15375
Enzymes [BR:gji01000]
 2. Transferases
  2.7  Transferring phosphorus-containing groups
   2.7.7  Nucleotidyltransferases
    2.7.7.4  sulfate adenylyltransferase
     H1R19_15375
SSDB
Motif
Pfam: GTP_EFTU GTP-eEF1A_C MMR_HSR1 GTP_EFTU_D2 GTP_EFTU_D4
Other DBs
NCBI-ProteinID: QMT00295
UniProt: A0A7D7LTK9
LinkDB
Position
3451527..3452822
AA seq 431 aa
MKHAPDLLRIATAGSVDDGKSTLVGRLLFDTKSVLADQIDAVTKASVDRGLDTPDLSLLV
DGLRAEREQGITIDVAYRYFATPARSFVLADTPGHVQYTRNTVSGASTAQLVILLVDART
GVVAQTRRHAAVMALLGVPQLVLAVNKIDLVSDQASVFAEISAEFAELTRSLGWSDEQVT
AIPVSALHGDNVANRSETTAFYDGPTLIEHLETVPNLVARSEVGLRFPVQYVIRPRTPEY
PDYRGYAGLIAAGRVSVGDEVVILPSGRRSTVSQIDTADGQLATAHTGRSVTILLEDDVD
ISRGDLIAAVSDAPEPVQQFTATVCWLAEKPLRPGARLLLKHGTKTTQAIVGALDALFDE
QELALVEAPESVELNQIVRISVQTAEPIPADDYQVNRESGSFLLIDPQGGNTLAAGLVGD
ALAPLHLKELV
NT seq 1296 nt   +upstreamnt  +downstreamnt
atgaagcacgcacccgaccttctccgcatcgcgaccgcgggcagcgtcgacgacggtaag
tccacgctcgtcggccggctgttgttcgacacgaaatccgttctggccgaccagatcgac
gcggtcaccaaggcatcggtcgaccgcggtctcgacacccccgacctgtcactgctcgtc
gacggtttgcgcgccgagcgcgaacagggcatcaccatcgatgtcgcctaccgctacttc
gccacgcccgcacggtcgttcgtgctcgccgacacccccggccacgtgcagtacacacgt
aacaccgtgtccggggcatccaccgcacagctggtgatcctgctcgtcgatgcccgcacc
ggcgtcgtcgcccagacccgtcgccacgccgcggtgatggcgctcctcggtgtgccgcag
ctggtgctggcggtcaacaagatcgacctcgtctcagatcaggcgtcggtgttcgccgag
atctcggccgagttcgccgaactgacccgctcgctgggctggtccgacgagcaggtcacc
gcgatcccggtgtcggcattgcatggtgacaacgtcgcgaaccgctcggagaccaccgcg
ttctacgacggaccgacactcatcgaacatctcgagacggtgccgaacctggtggcgcgc
agcgaggtcggcctccggttccccgtccagtacgtcatccgtccgcgcacgccggagtat
cccgactaccgcggctacgcgggcctgatcgcggccggccgggtgtcggtcggcgacgaa
gtggtcatccttccgtcgggccggcgatccaccgtcagccagatcgacaccgccgacgga
caactcgccaccgcccacaccggacgcagcgtcaccatcctgctggaggacgatgtcgac
atctcccgcggcgacctgatcgcggcggtatccgacgccccggaacctgtgcagcagttc
accgcgacggtgtgctggctggccgagaagccgctgcgcccgggtgcgcgtctgctcctc
aagcacggcaccaagaccacccaggccatcgtcggcgcgctcgatgcactgttcgacgag
caggagctggcgctggtcgaggccccggagtcggtggagctcaaccagatcgtgcggatc
tcggtgcagaccgccgagccgatcccggccgacgactaccaggtcaaccgcgagtcgggc
agcttcttgctcatcgatccgcagggtggcaacacgctggccgcggggctcgtgggtgac
gctctcgccccgctgcatctcaaagagctggtgtga

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