KEGG   Pantoea eucrina: LAC65_07825
Entry
LAC65_07825       CDS       T07862                                 
Symbol
ttcA
Name
(GenBank) tRNA 2-thiocytidine(32) synthetase TtcA
  KO
K14058  tRNA 2-thiocytidine biosynthesis protein TtcA
Organism
per  Pantoea eucrina
Brite
KEGG Orthology (KO) [BR:per00001]
 09180 Brite Hierarchies
  09182 Protein families: genetic information processing
   03016 Transfer RNA biogenesis [BR:per03016]
    LAC65_07825 (ttcA)
Transfer RNA biogenesis [BR:per03016]
 Prokaryotic type
  tRNA modification factors
   Thiolation factors
    LAC65_07825 (ttcA)
SSDB
Motif
Pfam: ATP_bind_3
Other DBs
NCBI-ProteinID: UBB14693
LinkDB
Position
1674716..1675651
AA seq 311 aa
MSENQDVTKKEQYNFNKLQKRLRRNVGEAIADFNMIEEGDRIMVCLSGGKDSYTMLEILR
SLQQSAPVNFSLVAVNLDQKQPGFPAHILPAYLETLGVEYKIVTEDTYSIVKEKIPEGKT
TCSLCSRLRRGILYRTASELGCTKIALGHHRDDILQTLFLNMFYGGKMKGMPPKLMSDDG
KHIVIRPLAYCREKDIIRFAEARQYPIIPCNLCGSQPNLQRQVVADMLRDWDKRFPGRIE
TMFSAMQNIVPSHMADISLFDFKGIRHGDEVVDGGDIGFDRETLPMQPAGWQPDEDAAAT
AELRLDVLEIK
NT seq 936 nt   +upstreamnt  +downstreamnt
atgtcagaaaatcaagacgtaacaaaaaaagagcaatacaacttcaataaactgcagaag
cgcctgcgccgcaacgtcggcgaagcgattgctgacttcaacatgattgaagaaggcgac
cgcatcatggtctgtctctcaggcggtaaagacagctataccatgctggagatcctgcgc
agcctgcagcagagcgcgccggtgaatttttcgctggtggcggtcaatctcgatcagaag
cagcccggcttcccggcgcatattctgcccgcttatcttgagacgctgggcgtggagtat
aaaattgtcaccgaagatacttactctattgttaaagagaagatcccggaaggcaaaacc
acctgctcactctgctcgcgtctgcgtcgcggtattctctatcgcaccgccagcgaactg
ggctgtactaaaattgcgctcggccatcatcgcgacgatatcctgcagacgctgtttctt
aatatgttctacggcggcaaaatgaaaggcatgccgcccaagctgatgagtgatgacggc
aagcatattgttatccgccctctcgcctactgccgtgaaaaagatattatccgctttgct
gaagcgcgccagtacccgattatcccctgcaacctgtgcggttcgcaacccaacctgcag
cgtcaggtggtggccgatatgctgcgcgactgggataaacgttttccgggccgcattgaa
accatgttcagcgccatgcagaacattgtgccttcgcatatggcggatatcagcctgttc
gatttcaaaggcatccgccatggcgatgaagtggttgatggtggtgatattggcttcgat
cgcgaaacgctgccgatgcagcccgcgggctggcagccggatgaggatgcagcagccacc
gcggagctgcggctggatgtattagagataaagtag

DBGET integrated database retrieval system