Chlorobium limicola: Clim_0156
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Entry
Clim_0156 CDS
T00766
Name
(GenBank) threonyl-tRNA synthetase
KO
K01868
threonyl-tRNA synthetase [EC:
6.1.1.3
]
Organism
cli
Chlorobium limicola
Pathway
cli00970
Aminoacyl-tRNA biosynthesis
Brite
KEGG Orthology (KO) [BR:
cli00001
]
09120 Genetic Information Processing
09122 Translation
00970 Aminoacyl-tRNA biosynthesis
Clim_0156
09180 Brite Hierarchies
09181 Protein families: metabolism
01007 Amino acid related enzymes [BR:
cli01007
]
Clim_0156
09182 Protein families: genetic information processing
03016 Transfer RNA biogenesis [BR:
cli03016
]
Clim_0156
Enzymes [BR:
cli01000
]
6. Ligases
6.1 Forming carbon-oxygen bonds
6.1.1 Ligases forming aminoacyl-tRNA and related compounds
6.1.1.3 threonine---tRNA ligase
Clim_0156
Amino acid related enzymes [BR:
cli01007
]
Aminoacyl-tRNA synthetase
Class II (C/G)
Clim_0156
Transfer RNA biogenesis [BR:
cli03016
]
Eukaryotic type
Aminoacyl-tRNA synthetases (AARSs)
Other AARSs
Clim_0156
Prokaryotic type
Clim_0156
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
tRNA-synt_2b
HGTP_anticodon
TGS
tRNA_SAD
Motif
Other DBs
NCBI-ProteinID:
ACD89255
UniProt:
B3EEC1
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All DBs
Position
complement(171965..173938)
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AA seq
657 aa
AA seq
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MSDIQEQQASIAITLPDGTVKNVPSGSTGFDIALSIGKRLADDALAVTINGKPTDLHAPV
LCDANIEIVTFDSQLGRDIFWHTASHIMAQAIEEIFPGSRFGAGPATEQGFYYDVASEHR
FREEDLRAIEQKMLEIAKRNIMLQREEMKRVDAIAYFTSVRNDPYKVEILEDTLKHVDTV
SLYHQGDFADLCTGPHLPSTSRLKAVLLSNISSSYWRGDSSRENMQRIYGIAFPSDKLLK
EHIARQEEAKRRDHRKLGTELELFMLSPEIGSGLPVWLPKGAVIRSELETFLKEEQRKRG
YLPVYTPHIGNIELYKRSGHYPYYSDSQFPPLTYHDEDGKQEQYLLKPMNCPHHHLIYSS
KLRSYRDLPIRLTEFGTVYRHEQSGELNGLVRARGFTQDDSHIYCTPEQLVDEICNAIDL
TQFVFGTLGFSEVQTRLSMHDPANQQKYGGTAEIWEQAEKDVREAADRMGIDYFIGVGEA
SFYGPKIDFIVRDALGRKWQLGTVQVDYVMPERFDLSYIGSDGQKHRPVVIHRAPFGSME
RFIGVLIEHTAGNFPLWLAPVQAVVLPIAEEVHDYAKTIHTALLAAGIRVEIDTRNEKIG
RKIREAEIGKIPCMIIVGQKERDSGEISLRRHRSGDMGSFTVPGLIDILKKEISERT
NT seq
1974 nt
NT seq
+upstream
nt +downstream
nt
atgtccgacatacaggaacagcaggcttcaatagccataaccctgcctgacgggacggta
aaaaacgttccctccggaagtaccggttttgatattgcactctctatcggcaaacggctt
gccgacgatgctcttgccgttacaatcaacggcaaaccgacggatctccacgcaccggtt
ctctgcgatgcaaatatagaaatcgtcactttcgactcgcaactcggaagagatattttc
tggcacaccgcaagccatatcatggcacaggcaatagaagagatcttccctggcagccgc
ttcggagcaggcccggcgacggaacagggtttttattacgacgtggcttcggagcaccgt
ttccgcgaggaagacctccgggcaatcgagcagaaaatgcttgaaatcgccaaacgaaat
atcatgcttcagcgcgaagagatgaaacgcgtcgatgccatcgcatatttcaccagcgtg
cgtaacgatccatacaaggtcgaaatcctcgaagataccctgaagcatgtcgataccgta
tcactctaccatcagggcgatttcgccgacctctgtacaggtccgcatctgccttcgaca
tccagactcaaagcggtactcctctcgaatatctcctcgtcctactggcgcggtgattcg
tcgagggagaacatgcagcgaatctacggtattgcctttccctcggataagctcctcaag
gaacatatcgcacgtcaggaagaggcaaaacggagggatcaccgcaaactcggtacggaa
ctcgaactgttcatgctttcgccggaaatcgggagcggactgccggtctggctgccgaaa
ggcgctgtcatccgcagtgagcttgaaacattcctcaaggaagaacagcggaaacgcggc
taccttccggtttacacgccgcatatcggcaatatcgaactgtataaacgatccggtcac
tatccatattacagcgattcgcagttccctcctctgacctatcatgacgaggatggaaag
caggagcagtatctgctcaagccgatgaactgtccgcaccatcatcttatctacagctcg
aagctgcgcagctaccgcgatctgccgatccgcctcacggagttcggaacggtttaccgt
cacgaacaatcgggggaactgaacggccttgttcgggcaagaggtttcacgcaggacgat
tcacatatatactgcactcccgaacagcttgtcgatgaaatctgcaatgccatcgacctg
acgcagtttgtcttcggtacccttggattctccgaagtacagacacgtctttcaatgcac
gacccggccaaccagcaaaaatacggaggcaccgccgaaatctgggaacaggccgagaaa
gatgtacgcgaagctgcagaccgtatgggcatagactattttatcggcgtcggagaagca
agtttctacggcccgaaaattgactttatcgtacgtgacgctctcgggcgcaaatggcag
cttggaaccgtccaggttgactatgtcatgccggaacggttcgacctgagctatatcggc
agcgatggtcaaaaacaccggccggttgtcattcaccgtgctccgttcggttcgatggaa
cgctttatcggagtgttgatcgagcataccgcaggcaatttcccgctctggctggctcct
gttcaggccgtggttctccccatcgcagaagaggtgcacgactatgcaaaaaccattcac
acagcgttgcttgccgcaggaattcgcgttgaaatcgataccagaaatgaaaaaatcggc
agaaagattcgcgaagccgaaatcggaaaaattccatgtatgattattgtcggacagaag
gaacgcgatagcggagagatttcgcttcgccgtcaccgttccggcgacatgggcagcttt
acggttcccggacttatcgacatacttaaaaaggaaatatcggagagaacctga
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