Vibrio cholerae O1 M66-2: VCM66_2033
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Entry
VCM66_2033 CDS
T00891
Name
(GenBank) conserved hypothetical protein
KO
K15461
tRNA 5-methylaminomethyl-2-thiouridine biosynthesis bifunctional protein [EC:
2.1.1.61
1.5.-.-]
Organism
vcm
Vibrio cholerae O1 M66-2
Brite
KEGG Orthology (KO) [BR:
vcm00001
]
09180 Brite Hierarchies
09182 Protein families: genetic information processing
03016 Transfer RNA biogenesis [BR:
vcm03016
]
VCM66_2033
Enzymes [BR:
vcm01000
]
2. Transferases
2.1 Transferring one-carbon groups
2.1.1 Methyltransferases
2.1.1.61 tRNA 5-(aminomethyl)-2-thiouridylate-methyltransferase
VCM66_2033
Transfer RNA biogenesis [BR:
vcm03016
]
Prokaryotic type
tRNA modification factors
Other tRNA modification factors
VCM66_2033
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
DAO
Methyltransf_30
NAD_binding_8
Pyr_redox_3
Pyr_redox_2
FAD_binding_2
FAD_binding_3
3HCDH_N
Glyco_transf_4
Pyr_redox
GIDA
Motif
Other DBs
NCBI-ProteinID:
ACP06335
UniProt:
C3LP59
LinkDB
All DBs
Position
I:2204504..2206528
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AA seq
674 aa
AA seq
DB search
MFIMSSISHAQLGWNDAGTPVSDQFDDVYFSNVNGLAETRYVFLEQNHLPQRWHNDDQRR
FVIAETGFGTGLNFLAVWQAFVAFREANPDAKLKELHFISFEKYPLSKSDLIQAHQAWPE
LAQFAQKLHKHYPLAIPECQRIVLNDGLVTLDLWFGDIKDCLPKVATQEQGLVDAWFLDG
FAPSKNPEMWNQNLFAGMAKLAKHGCTCATFTSAGFVRRGLIDAGFAMKKVKGFGTKREM
IAGSLSEKVPYTNIAPEFRFEATHGLQEVAIIGGGIASATLATTLARRGVAVTLYCADEK
PAQGASGNRQGAVYPLLSGDHNAVSRVFAPAFLFARQWIEQAAEQINFDHDWCGVTQLMW
DEKATDKLKSMLEGNFPTQLVHGLSAEQTNQQVGVPVDKASVHYPLGGWLSPAELTQGLI
HLLEQQGKLTAHYQTPIDALTWQPETQLWQLRSGDTLMSHQCVVIASGHQFDSLSQTAEL
PLGKVKGQVSHIPTTETLSKINSVLCYDGYMTPVSQQNGYHCIGASYDRQHLDATFDPQA
QHENAQKLIHCLPEQTWPLEVDVSGNQSRQGVRCVSRDHLPFVGNVGEFSKITEQYRDLA
QQHQAEPIALYPQLYALVGLGSRGLSSAPLMAELLASQMCGDPMPLGVDLLEQLHPSRMW
VRKLRKGKALTQKV
NT seq
2025 nt
NT seq
+upstream
nt +downstream
nt
ttgttcattatgtcatccatttcacacgcccagcttggctggaacgacgcaggaaccccc
gtctctgatcaatttgacgatgtttatttctctaacgtcaatggtctggctgagacgcgc
tatgtgttccttgagcagaatcatctcccacaaagatggcacaacgatgaccaaagacga
tttgtgattgcagaaactggcttcggtactggcctgaattttctggcggtgtggcaagcg
tttgtcgcgtttcgtgaagccaatcccgatgccaaactcaaagagctgcatttcatcagt
tttgaaaaatacccgctcagtaaaagcgatttaattcaagcgcatcaagcgtggccggaa
ctggcgcaattcgcgcaaaaactgcacaagcactacccgttagccattccagagtgtcag
cggattgtgttgaatgatggactcgtcacgctcgatctctggtttggggatatcaaagac
tgcctgccgaaagtcgcaacacaagagcaaggcttagtggatgcatggttcctcgatggt
tttgctcccagcaaaaaccccgagatgtggaatcaaaacctgtttgcaggtatggcaaaa
ctggcgaaacatggctgtacctgcgccacctttacttcggctggctttgtccgccgcggc
ttgattgacgcgggttttgcgatgaaaaaggtcaaaggctttggcactaagcgtgaaatg
atcgccggcagcctgagtgaaaaagtaccttacaccaatatcgcacccgaatttcgtttt
gaggccactcacggcctacaagaggtggccatcatcggcggtggtatcgccagtgccacg
ctagcgacaaccttagccagacgcggtgttgccgtcacgctttactgcgccgatgagaaa
ccggcgcaaggtgcatccggtaaccgacaaggcgcggtctatccgctactcagtggcgat
cacaacgcggtttcacgagtgtttgcgcctgcctttctgtttgcccgccaatggattgaa
caagcggcggagcagataaactttgaccacgattggtgcggcgtgactcaattaatgtgg
gatgaaaaagccacggacaaactcaagagcatgcttgaggggaatttcccaacacaatta
gtgcatggtttatccgcagagcaaaccaatcaacaagtcggcgtgccagtggataaagcc
agtgtgcattatccgctcggaggctggctcagccctgcggagctgactcaaggcttaatc
catcttttagagcagcagggcaagctcactgcgcattatcagactccgattgatgcattg
acttggcagccagagactcaactgtggcaactgcgcagtggcgacacactcatgtcacat
cagtgtgtggtgattgccagtggccatcaatttgacagcctgtcacaaaccgcagagtta
ccacttggcaaagtgaaaggccaagtgagccacatcccgaccacagagacgctgagcaaa
atcaacagtgtgctctgttacgacggttacatgactccggtcagccaacaaaatgggtat
cactgtattggcgcaagttatgatcgccagcaccttgatgcgacttttgatccgcaagca
caacacgaaaatgcacaaaagctaattcactgcttgcctgagcaaacttggccattggaa
gtggatgtcagcggcaatcaatcacgccaaggcgtgcgctgtgtgagtcgcgatcatctg
ccttttgtcggcaatgtcggcgaattttcgaaaatcaccgagcaatatcgcgatttagct
cagcagcaccaagctgagccaatcgcgctctatccgcaactttatgcgttggtcgggctt
ggctcacgcggtttaagtagcgcgccgctgatggcagaacttcttgcttcgcaaatgtgt
ggcgaccccatgccactaggcgtagatttgctcgaacagttacaccctagtcggatgtgg
gttcgaaagctgcgtaaaggcaaggcgctcacacaaaaagtctga
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