KEGG   Cupriavidus oxalaticus: E0W60_10380
Entry
E0W60_10380       CDS       T06004                                 
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
cox  Cupriavidus oxalaticus
Brite
KEGG Orthology (KO) [BR:cox00001]
 09180 Brite Hierarchies
  09182 Protein families: genetic information processing
   03000 Transcription factors [BR:cox03000]
    E0W60_10380 (ada)
   03400 DNA repair and recombination proteins [BR:cox03400]
    E0W60_10380 (ada)
Enzymes [BR:cox01000]
 2. Transferases
  2.1  Transferring one-carbon groups
   2.1.1  Methyltransferases
    2.1.1.63  methylated-DNA---[protein]-cysteine S-methyltransferase
     E0W60_10380 (ada)
Transcription factors [BR:cox03000]
 Prokaryotic type
  Helix-turn-helix
   AraC family
    E0W60_10380 (ada)
DNA repair and recombination proteins [BR:cox03400]
 Prokaryotic type
  SSBR (single strand breaks repair)
   Direct repair
    E0W60_10380 (ada)
SSDB
Motif
Pfam: DNA_binding_1 Ada_Zn_binding HTH_18 HTH_AraC DprA_N Methyltransf_1N
Other DBs
NCBI-ProteinID: QBY51732
UniProt: A0A4V1BYG4
LinkDB
Position
1:complement(2310937..2312019)
AA seq 360 aa
MPGPRHNAGSTDNKSAIENDPRWARVLARDPAADGSFVYAVKTTGVYCLPSSPSRLPHPA
NVEFFDNASAAEAAGYRPSRRAAPPALAAQHAAMVADACRRIEAADTLPALPELARAAGV
SPYHFHRLFKAATGLTPRAYAAAHRASKLRTQLGSSESVTEAIYDAGFGSNSRFYETADA
VLGMTPSRYRAGGAGTDIRFAIGQSALGAILVAQSKRGVCAILLGDDPQALLQDLQDQFP
RANLIGGDARFEQLVAQVVGFVEAPATGLALPLDVRGTAFQQRVWQALQEIPPGSTASYA
EIAARIGAPRAVRAVAQACAANHLAVAIPCHRVVRSDGGLSGYRWGVARKRDLLAREAKG
NT seq 1083 nt   +upstreamnt  +downstreamnt
atgccagggccgcgccacaacgccggcagcaccgacaacaaatccgccatcgagaacgac
ccgcgctgggcgcgcgtgctggcgcgcgatcccgccgccgacggcagctttgtctacgcg
gtcaagaccaccggcgtctattgcctgcccagcagcccgtcgcggctgccgcatccggcc
aatgtcgagttcttcgacaacgcctcggcggccgaagccgcaggctaccggccaagccgc
cgcgccgcgccgcccgcgctggccgcacagcacgccgccatggtggccgacgcatgccgc
cgcatcgaagcggccgataccttgcccgcgctgcccgaactggcgcgcgccgccggcgtc
agcccctaccatttccaccggctcttcaaggccgcgaccggcctgaccccgcgcgcctac
gcggccgcgcaccgcgccagcaagctgcgcacgcaactgggcagcagcgaatcggtgacg
gaggccatctacgacgccggcttcggctccaacagccgcttctacgagaccgcggacgcg
gtactcggcatgacgccgtcgcgctaccgcgctggcggcgccggcacggatatccgcttc
gccatcggccagtccgcgctgggagcgatcctggtcgcgcagagcaagcgcggcgtctgc
gcgatcctgctgggcgacgatccgcaggcgctgctgcaggatctgcaggaccagttcccg
cgcgccaacctgatcggcggcgacgcgcggttcgagcaactggtggcgcaggtagtgggc
tttgtcgaggcgccagcgaccggcctggcgctgccgctggacgtgcgcggcaccgccttc
cagcagcgcgtctggcaagcgctgcaagaaatcccgccgggcagcaccgccagctatgcc
gagatcgcggcccgcatcggcgcgccgcgggcggtacgcgcggtggcgcaggcctgcgcg
gccaaccacctggcggtggcgattccttgccatcgcgtcgtgcgcagcgacggcggcctg
tcaggctaccgctggggcgttgcgcgcaagcgcgatttgcttgcgcgcgaagcaaaaggc
tga

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