KEGG   Fundicoccus culcitae: NRE15_11675
Entry
NRE15_11675       CDS       T09401                                 
Name
(GenBank) Dam family site-specific DNA-(adenine-N6)-methyltransferase
  KO
K06223  DNA adenine methylase [EC:2.1.1.72]
Organism
fct  Fundicoccus culcitae
Pathway
fct03430  Mismatch repair
Brite
KEGG Orthology (KO) [BR:fct00001]
 09120 Genetic Information Processing
  09124 Replication and repair
   03430 Mismatch repair
    NRE15_11675
 09180 Brite Hierarchies
  09182 Protein families: genetic information processing
   03032 DNA replication proteins [BR:fct03032]
    NRE15_11675
   03400 DNA repair and recombination proteins [BR:fct03400]
    NRE15_11675
  09183 Protein families: signaling and cellular processes
   02048 Prokaryotic defense system [BR:fct02048]
    NRE15_11675
Enzymes [BR:fct01000]
 2. Transferases
  2.1  Transferring one-carbon groups
   2.1.1  Methyltransferases
    2.1.1.72  site-specific DNA-methyltransferase (adenine-specific)
     NRE15_11675
DNA replication proteins [BR:fct03032]
 Prokaryotic type
  DNA Replication Termination Factors
   DNA methylation enzymes
    NRE15_11675
DNA repair and recombination proteins [BR:fct03400]
 Prokaryotic type
  SSBR (single strand breaks repair)
   MMR (mismatch excision repair)
    Other MMR factors
     NRE15_11675
Prokaryotic defense system [BR:fct02048]
 Restriction and modification system (R-M system)
  Type II R-M system
   DNA methyltransferases
    NRE15_11675
SSDB
Motif
Pfam: MethyltransfD12 PI_PP_I Ribosomal_S2
Other DBs
NCBI-ProteinID: UUX33550
LinkDB
Position
complement(2561341..2562231)
AA seq 296 aa
MAIDAKPFVKWAGGKSKLSSTILDFSSTKLDFDDFDTYMEPFVGGGGMFFAVANQHNFKK
KIISDNNLQLINTYKVIKENVNGLITELDKIQNEFNALPSMDDKKEYYLFLRATFNKHLL
SDNLVKQSSLLIALNKLGFNGLYRVNGKGEFNVPFGQKKTANLYSKNNLHNVNHILQTTE
IYHLDFRDTIEFVDEKTLVYIDSPYRPLPGTQAFKYQKSDFDDNDQIELAEYCQEINHRN
GSFILSNSDPIQKDPNDFFFDDLYKDFDIARIDARRSIGATASRRGVVSEILVIGQ
NT seq 891 nt   +upstreamnt  +downstreamnt
ttggcaatagatgcaaagccctttgtaaaatgggctggaggaaaatctaagctttcttct
acaattttagatttttcaagtactaaattagactttgatgattttgatacctatatggaa
ccatttgtaggcgggggtggtatgttctttgcagtagcaaatcaacataattttaagaaa
aaaattatttctgataataaccttcaattaattaatacatacaaagttattaaagagaat
gttaatggtttaatcaccgaattagataaaatccaaaacgaatttaatgctttaccttct
atggatgacaagaaagaatattatttgttcttaagagctacttttaataaacatctacta
tcagataatttagttaaacaatccagcttactcatcgccttaaacaaattaggattcaat
ggtttatatcgagtaaatggaaaaggtgagtttaatgttccattcggacagaaaaaaact
gcaaatctatattctaaaaataatctgcataatgtgaatcatattttacaaacaacagag
atttaccatcttgatttcagagatacaatagaattcgtagatgaaaaaacattagtttat
attgatagcccatatagacctttacctgggacccaagcatttaaatatcaaaagtctgat
tttgatgataatgaccaaatagaactagcagaatactgccaagaaattaatcatagaaac
ggatcgtttatacttagtaactctgatcctatacaaaaagatcctaatgatttcttcttc
gatgacttatataaagattttgatatagccagaatagacgcaagaagatcaatcggtgct
accgcaagtcggagaggtgtggtttcagaaatattagtgattggacagtga

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