KEGG   Raineyella fluvialis: Rai3103_14585
Entry
Rai3103_14585     CDS       T06259                                 
Name
(GenBank) glutamine--tRNA ligase/YqeY domain fusion protein
  KO
K01886  glutaminyl-tRNA synthetase [EC:6.1.1.18]
Organism
rain  Raineyella fluvialis
Pathway
rain00970  Aminoacyl-tRNA biosynthesis
rain01100  Metabolic pathways
Brite
KEGG Orthology (KO) [BR:rain00001]
 09120 Genetic Information Processing
  09122 Translation
   00970 Aminoacyl-tRNA biosynthesis
    Rai3103_14585
 09180 Brite Hierarchies
  09181 Protein families: metabolism
   01007 Amino acid related enzymes [BR:rain01007]
    Rai3103_14585
  09182 Protein families: genetic information processing
   03016 Transfer RNA biogenesis [BR:rain03016]
    Rai3103_14585
Enzymes [BR:rain01000]
 6. Ligases
  6.1  Forming carbon-oxygen bonds
   6.1.1  Ligases forming aminoacyl-tRNA and related compounds
    6.1.1.18  glutamine---tRNA ligase
     Rai3103_14585
Amino acid related enzymes [BR:rain01007]
 Aminoacyl-tRNA synthetase
  Class I (A)
   Rai3103_14585
Transfer RNA biogenesis [BR:rain03016]
 Eukaryotic type
  Aminoacyl-tRNA synthetases (AARSs)
   Multi-aminoacyl-tRNA synthetase complex (MSC)
    Rai3103_14585
 Prokaryotic type
   Other AARSs
    Rai3103_14585
SSDB
Motif
Pfam: tRNA-synt_1c tRNA-synt_1c_C tRNA-synt_1c_C2
Other DBs
NCBI-ProteinID: QGF24656
UniProt: A0A5Q2FJZ2
LinkDB
Position
3182276..3183973
AA seq 565 aa
MTSPEPVVPASDFVRDTVRRDNEQGTYGSRVQTRFPPEPNGYLHIGHAKAITVDFGVAED
FGGTCKLRFDDTNPETEDEEFVQSIIDDIRWLGYTPDDIVYASDYFEQLYAWAELMVERG
LAYVDEQDSETISAQRGGYGQPGVESPFRDTAPEDNLAKLRAMRAGEFADGSRVLRAKID
MQHENMQLRDPIMYRIRRGHHHRTGDAWCIYPTYDWAHGQSDAIEGVTHSLCTLEFESHR
PLYNWFLEQLPLPGDTPKQLEFARLELTHTVTSKRRLAKLVHEGLVEGWDDPRMPTISGL
RRRGYPAAAIRDFCRYVGVNRTNSRPSIELLESFVRRELNRTAQRRMAVIRPLKLVITNW
PTSADGSPVVEHFSVVNNPENEADGSREVAFSGELYIERDDFAEVPPPKYFRLSPGREVR
LRGAYFVTATDVVKDAEGNVVEVHCTYDPQTRGGTAPDGRKVKSTMHWVSAQHAVDATAV
LYDRLFSTEAPGAATGEPLDDLNADSRELLSGCKVEAALAETVPGTVVQFERLGYFAHDP
RTPMLFHRTVGLKDEWAAIQKRQGK
NT seq 1698 nt   +upstreamnt  +downstreamnt
atgacctcccccgagcccgtcgttcccgccagcgatttcgtccgcgacaccgtacggcgc
gacaacgagcaggggacgtacggcagccgggtgcagacccgcttcccgccggagcccaac
ggctacctccacatcgggcacgcgaaggcgatcaccgtcgacttcggggtagcggaggac
ttcggcggcacctgcaagctccggttcgacgacaccaatccggagaccgaggacgaggag
ttcgtccagtccatcatcgatgacatccgctggctcggatacacccccgatgacatcgtc
tacgcctcggactacttcgagcagctgtacgcgtgggcggagctgatggtcgagcgggga
ctggcctacgtcgacgagcaggacagcgagaccatctccgcgcagcgcggcggctacgga
cagcccggcgtggagagccccttccgcgacaccgcaccggaggacaacctggccaagctg
cgggccatgcgtgcgggggagttcgccgacgggtcgcgggtgctgcgggcgaagatcgac
atgcagcacgagaacatgcagctgcgtgacccgatcatgtaccgcatccgtcgcggccac
caccaccggaccggcgacgcctggtgcatctaccccacgtacgactgggcccacggccag
agcgacgcgatcgagggcgtgacgcactcgctgtgcaccctggagttcgagtcccaccga
ccgctctacaactggttcctcgagcagctgccgctgcccggtgacacccccaagcagttg
gagttcgcccgcctcgagctcacccacacggtgacgtccaagcggcgcctggcgaagctc
gtgcacgagggcttggtcgagggctgggacgatccgcggatgcccactatcagcgggctg
cggcgacgcggctacccggccgccgccatccgcgatttctgccgctacgtcggggtgaac
cggaccaacagccgacccagcatcgagttgctggagtcgttcgttcggagggaactcaac
cggaccgcccagcgccggatggccgtcatccggccactcaagctggtcatcacgaactgg
ccgacctccgcggacggcagccccgtcgtcgagcacttctcggtggtgaacaaccccgag
aacgaggcggacggctcccgtgaggtggccttcagcggcgagctctacatcgagcgcgac
gacttcgcggaggtccccccgcccaagtacttccggctgtcgccgggtcgcgaggtgcgg
ctccggggtgcctatttcgtcaccgccaccgatgtcgtgaaggacgccgagggcaacgtc
gtcgaggtgcactgcacgtacgatccgcagacccggggcggtaccgccccggacggccgc
aaggtgaagtcgacgatgcactgggtctcggcgcagcatgccgttgacgcgacggccgtc
ctctacgatcggctgttctccaccgaggcacccggcgcggcgaccggtgaaccgctggac
gatctcaacgccgattcccgggaactgctgagcggctgcaaggtcgaggcggcactggcc
gagaccgtccccggcaccgtggtccagttcgagcgtctgggctacttcgcccacgacccg
cggacgccgatgctgttccaccgcacggtcgggctcaaggacgagtgggctgccatccag
aagcgccagggcaagtga

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