KEGG   Xylanimonas allomyrinae: ET495_07885
Entry
ET495_07885       CDS       T05814                                 
Symbol
mnmA
Name
(GenBank) tRNA 2-thiouridine(34) synthase MnmA
  KO
K00566  tRNA-uridine 2-sulfurtransferase [EC:2.8.1.13]
Organism
xyl  Xylanimonas allomyrinae
Pathway
xyl04122  Sulfur relay system
Brite
KEGG Orthology (KO) [BR:xyl00001]
 09120 Genetic Information Processing
  09123 Folding, sorting and degradation
   04122 Sulfur relay system
    ET495_07885 (mnmA)
 09180 Brite Hierarchies
  09182 Protein families: genetic information processing
   03016 Transfer RNA biogenesis [BR:xyl03016]
    ET495_07885 (mnmA)
Enzymes [BR:xyl01000]
 2. Transferases
  2.8  Transferring sulfur-containing groups
   2.8.1  Sulfurtransferases
    2.8.1.13  tRNA-uridine 2-sulfurtransferase
     ET495_07885 (mnmA)
Transfer RNA biogenesis [BR:xyl03016]
 Prokaryotic type
  tRNA modification factors
   Thiolation factors
    ET495_07885 (mnmA)
SSDB
Motif
Pfam: tRNA_Me_trans tRNA_Me_trans_M tRNA_Me_trans_C NAD_synthase ThiI Asn_synthase QueC
Other DBs
NCBI-ProteinID: QAY63172
UniProt: A0A4P6EKL7
LinkDB
Position
complement(1728199..1729398)
AA seq 399 aa
MRVLAAMSGGVDSAVAAALAVEAGHDVVGVHMALSRNRDQFRTGSRGCCSIEDASDARRA
ADVLGIPYYVWDLSETFEETVVADFLAEYEAGRTPNPCVRCNERVKFEALLDKATALGFD
AVATGHYARIVDGPGGRELHRSPHAEKDQSYVLAVMGPERLARAVFPLGGFTSKAQVRAE
AAARGLAVSAKPDSYDICFVADGDTRGFLRERLGSRPGEVRDVAGHVVGEHDGAYAYTVG
QRRGLALGRPAPDGRARYVLDVRTDTNTVVVGPAELLSVDRIAGVRATWLAPLAAAGVEP
RGVEPRGAAPAGAAAEDLVLEDVVLDDVEVQVRAHGAPVPARVRAAGEGLVVELTGTPLR
GVAAGQSVVVYRGTRVLGQATVSRAWRAARAEAPAGTPG
NT seq 1200 nt   +upstreamnt  +downstreamnt
atgagggtgctggcggcgatgtcgggcggcgtcgactcggcggtcgcggcggcgctcgcg
gtcgaggccggtcatgacgtcgtcggcgtccacatggcgctgagccgcaaccgcgaccag
ttccgcacgggctcgcgcggctgctgctcgatcgaggacgcctcggacgcgcgccgggcc
gccgacgtgctgggcatcccgtactacgtgtgggacctgtcggagacgttcgaggagacg
gtcgtggcggacttcctcgccgagtacgaggccgggcgcacccccaacccgtgcgtgcgc
tgcaacgagcgcgtcaagttcgaggcgctgctcgacaaggccaccgcgctcggcttcgac
gccgtcgcgaccggccactacgcgcgcatcgtggacggcccaggcgggcgcgagctgcac
cgctcgccccacgccgagaaggaccagtcgtacgtgctggccgtgatggggcccgagcgg
ctcgcgcgggcggtcttcccgctcggcgggttcacgtcgaaggcccaggtgcgcgccgag
gccgccgcgcgcggcctggcggtcagcgccaagcccgactcctacgacatctgcttcgtc
gccgacggcgacacgcgagggttcctgcgcgagcgcctcgggtcgcggccgggcgaggtg
cgcgacgtcgcgggccacgtcgtcggcgagcacgacggcgcctacgcctacaccgtgggc
cagcggcggggcctggcgctgggccgcccggcacccgacggccgcgcccgctacgtgctc
gacgtgcgcaccgacaccaacaccgtggtcgtgggcccggccgagctgctgtcggtggac
cggatcgcgggtgtgcgggcgacgtggctggcaccgctcgccgcggcgggcgtcgagccg
cggggcgtcgagccgcggggtgcagcgcccgcgggcgctgctgcggaggacctcgtgctg
gaggacgtcgtgctggatgacgtcgaggtccaggtccgcgcgcacggggcgcccgtcccg
gcgcgcgtgcgtgcggccggggaggggctggtggtcgagctcacgggcacgccgctgcgc
ggcgtcgcggccggtcagtcggtcgtcgtctaccgcggcacgcgcgtgctgggccaggcc
accgtgtcccgggcctggcgtgcggcgcgcgccgaggcgccggccgggacgcccggatga

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