Vibrio cholerae O1 MJ-1236: VCD_000322
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Entry
VCD_000322 CDS
T00903
Name
(GenBank) 3-methyladenine DNA glycosylase
KO
K13529
AraC family transcriptional regulator, regulatory protein of adaptative response / DNA-3-methyladenine glycosylase II [EC:
3.2.2.21
]
Organism
vcj
Vibrio cholerae O1 MJ-1236
Pathway
vcj03410
Base excision repair
Brite
KEGG Orthology (KO) [BR:
vcj00001
]
09120 Genetic Information Processing
09124 Replication and repair
03410 Base excision repair
VCD_000322
09180 Brite Hierarchies
09182 Protein families: genetic information processing
03000 Transcription factors [BR:
vcj03000
]
VCD_000322
03400 DNA repair and recombination proteins [BR:
vcj03400
]
VCD_000322
Enzymes [BR:
vcj01000
]
3. Hydrolases
3.2 Glycosylases
3.2.2 Hydrolysing N-glycosyl compounds
3.2.2.21 DNA-3-methyladenine glycosylase II
VCD_000322
Transcription factors [BR:
vcj03000
]
Prokaryotic type
Helix-turn-helix
AraC family
VCD_000322
DNA repair and recombination proteins [BR:
vcj03400
]
Prokaryotic type
SSBR (single strand breaks repair)
BER (base exicision repair)
DNA glycosylases
VCD_000322
SSDB
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Paralog
GFIT
Motif
Pfam:
AlkA_N
Ada_Zn_binding
HTH_18
HTH_AraC
YdaS_toxin
HhH-GPD
Motif
Other DBs
NCBI-ProteinID:
ACQ62290
LinkDB
All DBs
Position
2:378393..379751
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AA seq
452 aa
AA seq
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MTLLNELSAEVCQRARMSRDPRFDGRFFVAVKTTGIFCRPICPANLPKEENVEYFSSQAL
AVSAGYRPCLRCRPESAPHSWAWKGAETTFLRALTLIEQGELDGSLETLASRLGISDRYL
RQLFQRHLGMPPKQYAQIQQLMFAKQLLHTSQISITEVAYASGFQSTRRFNDAFQKLFRL
TPTQVRRERAALPSRNHLSLAFRGPFDWAHMLDFYRLRAIEGMELIDEQSYQRHFVLGEG
TGWFKASMAQSHLDIEFEMERLSDLRHLVARLRRMFDLDADLISIEAHLEQLAPGLVRRT
GIRIPGVWNAWEAGVRAVLGQQVSVKAAIGQLNLLVSTLAASEGSTRYFPTPEQVQMSDL
SFLRMPERRKETLKRLADYVRLHPMDSPMAWLSLSGIGPWTVDYAQLRGESRSHCFLTGD
LIVKKALAKFPQLTAESVAPWGSYATFHCWSH
NT seq
1359 nt
NT seq
+upstream
nt +downstream
nt
atgacattgcttaatgaattatccgcagaggtgtgccaacgcgctcggatgagccgagat
ccacggtttgatgggcgtttttttgttgcggttaaaaccacagggattttttgccgcccg
atttgcccagccaacctaccgaaagaagagaatgttgagtatttttcctcgcaagcgtta
gcggtatcggcgggctaccgaccttgtttgcgctgccggcctgaaagcgctccccattca
tgggcgtggaaaggagccgaaaccacatttctacgtgccttgactctgattgagcaggga
gagctggacggcagtttagagactttagcctcacgcttaggtatcagtgaccgttatctg
cgccagctttttcagcgtcatttaggaatgccgcctaaacaatatgcgcagatccagcag
ctcatgtttgccaaacaattactgcatacgagccaaatttcgattaccgaagtggcttac
gccagtggatttcagagcacccgccgttttaatgatgcgttccaaaaattatttcggttg
acgccgacccaagttcggcgagaacgagccgctcttccttctcgaaatcatctgagctta
gcttttcgcggcccttttgactgggcgcatatgttggatttttatcgtctgcgagcgatt
gaaggcatggagctgatcgatgaacagagctatcaacgtcattttgtccttggtgaaggt
acaggatggtttaaggcgagcatggcacagtcgcacttagacattgagtttgagatggag
cgtttgagtgatcttcgccacttagtcgctcggctgcgacgaatgtttgatctcgatgca
gacctgatcagtattgaggctcatttagagcagttagctccgggattggtacggcgcacc
gggatccgtatccccggggtatggaatgcatgggaagcgggagtgcgcgcagtgctcggt
caacaagtttcagtcaaagccgcaattggacaattgaacttgttagtctccacgctggcg
gctagcgaagggtcaacacgttatttcccaaccccagaacaagtgcaaatgagcgactta
agctttttacgtatgccggaaaggcgtaaggaaaccttaaaacgtttggcggactacgtc
cggttgcatcctatggattcgccaatggcgtggttatcgctaagcgggattggtccttgg
actgtcgattacgcgcaattgcgcggtgaatcacgtagccactgttttttaaccggagat
ttgatcgtgaaaaaagcactggcgaaatttcctcagttaactgccgaatcggtcgcccct
tggggcagttatgccacttttcattgctggagccactaa
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