KEGG   Yersinia pestis El Dorado: CH46_3568
Entry
CH46_3568         CDS       T03719                                 
Name
(GenBank) hypothetical protein
  KO
K01141  exodeoxyribonuclease I [EC:3.1.11.1]
Organism
ypl  Yersinia pestis El Dorado
Pathway
ypl03430  Mismatch repair
Brite
KEGG Orthology (KO) [BR:ypl00001]
 09120 Genetic Information Processing
  09124 Replication and repair
   03430 Mismatch repair
    CH46_3568
 09180 Brite Hierarchies
  09182 Protein families: genetic information processing
   03400 DNA repair and recombination proteins [BR:ypl03400]
    CH46_3568
Enzymes [BR:ypl01000]
 3. Hydrolases
  3.1  Acting on ester bonds
   3.1.11  Exodeoxyribonucleases producing 5'-phosphomonoesters
    3.1.11.1  exodeoxyribonuclease I
     CH46_3568
DNA repair and recombination proteins [BR:ypl03400]
 Prokaryotic type
  SSBR (single strand breaks repair)
   MMR (mismatch excision repair)
    DNA exonucleases
     CH46_3568
  DSBR (double strand breaks repair)
   HR (homologous recombination)
    RecBC pathway proteins
     CH46_3568
   NHEJ (non-homologous end-joining)
    SHDIR (short-homology-dependent illegitimate recombination)
     Supressor
      CH46_3568
SSDB
Motif
Pfam: Exonuc_X-T_C RNase_T YkoP
Other DBs
NCBI-ProteinID: AJJ13286
UniProt: A0AAX2HYT0
LinkDB
Position
3894431..3895861
AA seq 476 aa
MSDKNKQPTFYVHDYETFGQRPALDRPAQFAGVRTDLDFNLVEEPLVIYCKPADDYLPQP
EAVMITGITPQHALANGVNEAEFSRQIHQAFSVPGTCILGYNNIRFDDEVSRNIFYRNFY
DPYAYSWQGGNSRWDLLDVMRACYALRPEGIVWPENDDGLPSFKLEHLTKANGVEHLQAH
DAMSDVYATIAMAKLVKQAQPRLFDYLYQHRSKHKINALIDIAEMTPLVHVSGMFGAARG
NTSWVAPLAWHPENKNAVIMCDLAGDMSPLLELDSDTLRERLYTRRDKLQAQESAIPIKL
VHINKCPVLAPAKTLLPENADRLGIDRQRCLQNLQLLRQNPQVREKVVALFAQAEPFAVT
DDVDTQLYNGFFSDADRATIKIIQQTESQNLPALDLTFQDPRLEALLFRFRARNYPNTLN
DSEQQRWLQHRREALSPERVQDYVLQLEQFYNQYEDDKEKLALLKALFEYAKGLVS
NT seq 1431 nt   +upstreamnt  +downstreamnt
atgtcagataaaaataagcaaccaacattttacgtccacgattatgaaaccttcggccag
cggccagccttggatagacctgcgcaatttgccggggtacgtaccgatctggatttcaat
ctcgtcgaagagccattggtcatttactgcaagcccgcagatgattatctgccacagccc
gaagcggtgatgataaccggtattaccccccaacatgctttagccaacggggtcaatgaa
gctgagttttcccgccaaatacaccaggccttttcggtacccggcacctgtatcctcggc
tacaacaatattcgttttgatgatgaagtcagtcgcaacattttctatcgtaatttttat
gatccttatgcctacagttggcaggggggaaattcccgttgggatctgttggatgtgatg
cgcgcctgctatgccctgcgcccagaaggtattgtttggcccgaaaatgatgatggcctg
cccagctttaaactggaacatttgaccaaagccaatggcgtcgaacatttacaggcacat
gatgcgatgtccgatgtctacgccaccattgcaatggcaaaattggtgaaacaggcccaa
ccccgtctgtttgattatctgtatcagcaccgcagtaagcataagatcaatgcgttgatt
gatatcgcggagatgacaccactggttcatgtgtctggcatgtttggtgccgcacggggc
aacaccagttgggtggcaccgctggcctggcaccccgagaataaaaatgcggtaattatg
tgtgatctggccggggatatgtccccattactggagttggacagcgatacattgcgcgaa
cgtctgtatacccgccgtgacaagctccaagcccaagagtcggcaatccctatcaaactg
gtacatatcaataaatgtccggtattggctcccgcgaaaaccctgctgcccgagaatgct
gatcgcttggggattgatcgccagcgttgtttgcaaaatctacaactgctgcggcaaaac
ccacaggtgcgtgaaaaagtggtcgcgctgtttgcacaagctgagccattcgcggttacc
gatgatgtggatacacagttgtataacggctttttcagtgatgctgatcgcgccaccata
aagattatccagcaaactgagtcacaaaatctgccagcactggatttgacatttcaggac
ccacggttggaggccctgttattccgcttccgcgcccgtaactacccgaataccttgaat
gacagtgaacaacagcgttggttacagcatcgccgtgaagcgcttagccctgaacgggta
caagattatgttttgcaactggaacaattttataaccagtatgaagacgataaagagaaa
cttgcgctgctaaaagcgttgtttgaatatgccaagggattagtgagttaa

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