Symbiopectobacterium purcellii: K6K13_19815
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Entry
K6K13_19815 CDS
T07463
Symbol
ada
Name
(GenBank) bifunctional DNA-binding transcriptional regulator/O6-methylguanine-DNA methyltransferase Ada
KO
K10778
AraC family transcriptional regulator, regulatory protein of adaptative response / methylated-DNA-[protein]-cysteine methyltransferase [EC:
2.1.1.63
]
Organism
sym
Symbiopectobacterium purcellii
Brite
KEGG Orthology (KO) [BR:
sym00001
]
09180 Brite Hierarchies
09182 Protein families: genetic information processing
03000 Transcription factors [BR:
sym03000
]
K6K13_19815 (ada)
03400 DNA repair and recombination proteins [BR:
sym03400
]
K6K13_19815 (ada)
Enzymes [BR:
sym01000
]
2. Transferases
2.1 Transferring one-carbon groups
2.1.1 Methyltransferases
2.1.1.63 methylated-DNA---[protein]-cysteine S-methyltransferase
K6K13_19815 (ada)
Transcription factors [BR:
sym03000
]
Prokaryotic type
Helix-turn-helix
AraC family
K6K13_19815 (ada)
DNA repair and recombination proteins [BR:
sym03400
]
Prokaryotic type
SSBR (single strand breaks repair)
Direct repair
K6K13_19815 (ada)
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Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
DNA_binding_1
Ada_Zn_binding
HTH_18
HTH_AraC
HTH_31
Methyltransf_1N
Motif
Other DBs
NCBI-ProteinID:
QZN95411
UniProt:
A0ABX9AKR6
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Position
complement(4269028..4270122)
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AA seq
364 aa
AA seq
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MSTNERAFPEEERAQRENSWWDALCRRDKQADGRFVYGVKTTGIFCMPSCASRLPLRENV
QFFVDAEAARRAGFRPCKRCCPGNPSREQRQGAAITHACQLMAQAETSLTLAQVATAVGI
SPYHFHRLFKAQVGVTPKRYAAALRGQRVRALLSGNAPVTQAALAAGFHSSEQFYQESHQ
LLGMPPRSFKHKGQGMTIHFAIGACSLGATLVAESERGVCAVLLGDDATALINELHALFA
NATLVAGDATFEQRMALVIRAIDSPGAPLALPLDIRGTAFQLRVWQALRDIPRGTTLSYR
DVAEKIGQPDAVRAVAGACAANRLAVIVPCHRVIRTDGALSGYRWGIARKRQLLESEAKG
SHDG
NT seq
1095 nt
NT seq
+upstream
nt +downstream
nt
atgtcgacaaacgaacgcgcttttccagaggaagaacgtgctcaacgcgaaaatagctgg
tgggatgccctgtgccgacgtgataaacaggctgacggtcgctttgtctatggcgttaaa
accacggggatattttgtatgccttcctgcgcatcccgattgccgctgcgggaaaacgtg
cagttctttgtggatgcggaggcggcgcggcgggccgggttccggccctgtaagcgttgc
tgcccaggaaacccgtcccgtgagcagcggcaaggtgcggctattacgcacgcctgccaa
ctgatggcgcaggccgagacatcgctgacgttggcgcaggtggcaacggcggtgggtatc
agcccctaccattttcaccggctgtttaaagctcaggttggcgtaacgccaaagcgttat
gctgccgcgttgcgtggtcagcgtgtgcgcgccttgctgagtggtaatgcgccggtaacg
caagccgcattggcggcgggttttcattccagcgagcagttctatcaggaatcccatcaa
ctgctgggcatgccgccgcgcagttttaaacacaaggggcagggcatgacgattcatttt
gctattggtgcatgctcgctgggggctactctggtggcggagagcgagcgcggggtctgc
gctgttttactgggagatgatgccactgcattgataaacgagctgcacgcgctgtttgcc
aatgcgacgttggttgcaggcgatgcgacgtttgagcaacgcatggcgctggtcattcgc
gctattgattcaccgggggctccgttggcgttacccctcgatattcgtggcacggcgttt
caactgcgtgtctggcaggctctgcgagacattccccggggaaccacgctcagctaccgc
gatgtggctgaaaaaattggtcagccagacgcggtgcgcgcggtggctggcgcatgcgcc
gccaaccgcctggcggtgattgtcccttgccatcgggtgattcgcaccgatggtgcgttg
tcaggctatcggtggggcatcgcgcgtaaacgccaactgctggagagcgaggctaaagga
tcccatgatggatga
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