KEGG   Candidatus Blochmannia floridanus (Camponotus floridanus): Bfl267Help
Entry
Bfl267            CDS       T00138                                 

Gene name
recD
Definition
exonuclease V subunit alpha (EC:3.1.11.5)
Orthology
K03581  
exodeoxyribonuclease V alpha subunit [EC:3.1.11.5]
Organism
bfl  Candidatus Blochmannia floridanus (Camponotus floridanus)
Pathway
Homologous recombination
Brite
KEGG Orthology (KO) [BR:bfl00001]
 Genetic Information Processing
  Replication and repair
   03440 Homologous recombination
    Bfl267 (recD)
Enzymes [BR:bfl01000]
 3. Hydrolases
  3.1  Acting on ester bonds
   3.1.11  Exodeoxyribonucleases producing 5'-phosphomonoesters
    3.1.11.5  exodeoxyribonuclease V
     Bfl267 (recD)
BRITE hierarchy
SSDB OrthologParalogGene clusterGFIT
Motif Motif
Other DBs
NCBI-GI: 
NCBI-GeneID: 
UniProt: 
Position
complement(288494..290416)
Genome map
AA seq 640 aa AA seqDB search
MQHLLKKIISLKLHNELDIQFSKMLITESFPCDNTNNYYHNIKKIVLMLASIYVSTYVRS
GHTCLPIYLLSSGKLFQNYHPDLIHEIIQKTKKLSTNDWQDILLSSSAVGDGSSITPLVL
NNRRLYLHYIWEHECTVAKFFVHHSNDDSYLDQTKITIILNKLFLKTSKEINWHKIATAL
SMIHSRILISGEAGTGKTSTIAQIITALLLYNNKLRIKMVTPTGKSATVLTHACHKIFND
LNQLHMSNVHTSDLKATTIHNFLGLKLYNKYKYQYQYYSNYLNTNIDCLIIDEASMISLS
LLSQLIMHLSNNTKVILIGDHHQLHPIESGSVFQDICQFSNFGYSIQQQEKLKKLTNHTL
SMNNSSYTQNNYCNTIADKICIFKKNYRFHKNSGIIHLAKSVKIGDYNQTLFILHSKQYT
DLSYNHLQKKKDYINLIIHCAKKYSNYLKIIQNNKVSIKHALKIFEYYRILCALRHGPFG
VTQLNHYIEQVLNDQSLITLNHSGNYIGRPIIILQNEPSLELYNGEIGLLLLNSQNYLSA
YFLSSLHEIKTIPINQLPSYETCFAMTIHKAQGSEFQHISIIFPYHHTPILTRELLYTAI
TRARQHLDLYATDNVLIHTINLMNHRYSGLFDQIKKYSYM
NT seq 1923 nt NT seq  +upstreamnt  +downstreamnt
atgcaacatcttctaaaaaaaattatatcattaaaattacataacgaattagacattcaa
ttttctaaaatgttaatcactgaatcattcccatgtgataataccaataattattatcac
aatataaaaaaaattgtactaatgttagctagcatatatgtaagtacttacgtacgatca
ggacatacttgcctgccaatatatttattatcttcaggaaaattatttcaaaattatcat
ccagacctaatacatgaaattattcagaaaactaaaaaattatccacaaatgattggcaa
gatatattactttcttcatcagcagtaggagacggatcatcaattactccattagtttta
aataatcgacgattatacttacactatatatgggaacatgaatgcacagtagctaaattt
tttgttcatcattctaatgatgactcctatctcgatcaaacaaaaatcactatcatatta
aacaaattatttttaaaaacttctaaagaaattaattggcacaaaatagctactgcttta
agtatgatacattcaaggattttaatttcaggagaagctggtacgggaaaaacatcaact
atcgctcaaataatcacagccttactattatataataataaactacgtattaaaatggtt
actcccacaggaaaatcagcaactgtgttaacgcatgcatgccataaaatattcaatgat
ctcaatcaacttcatatgtctaatgtacatacatcagatctaaaagcaactactatacat
aattttctgggattaaaattatacaataaatataaatatcaatatcaatattattcaaac
tatttaaatacaaatatagattgtttaattattgatgaagcctctatgatcagtttatcg
ttattatcccaattaattatgcatttatctaataacacaaaagttattctcattggagac
caccaccaattacatcctatagaatcaggatctgtatttcaagatatatgtcaattttca
aatttcggttattctatacaacaacaagaaaaactcaaaaaattaacaaatcatacatta
tctatgaataattcttcatatacacagaataattattgtaacactattgctgataaaata
tgtatttttaaaaaaaattatagatttcataaaaattcaggtattattcacttagctaaa
tctgtaaaaataggagactataatcaaactttatttatattacattctaaacaatataca
gatttatcatataatcatcttcaaaaaaaaaaggattatataaatttaattatacattgc
gcaaaaaaatattctaattacctaaaaataatacaaaataataaagtatcaataaaacat
gctttaaaaatatttgaatattaccgaatattatgtgcattacgacatggaccatttgga
gtaacacaattaaaccattatattgaacaagttctgaatgatcaaagtctaatcacatta
aaccattctggaaattatattggacgacctattattatattacaaaacgaaccatcacta
gaattatataatggagaaattggattattattacttaattcacaaaactatttatctgct
tattttctttcatcactccatgaaattaaaactattccaatcaaccaattacctagctat
gaaacatgtttcgctatgaccatacacaaagcacaaggctctgaatttcaacatatatca
attatatttccgtatcaccacacacctattttaactagagaattactctatactgccatt
actagagcacgtcaacaccttgatctatatgcaacagataatgttctcatacataccatc
aatcttatgaatcatcgatatagtggtttatttgatcaaatcaaaaaatactcatatatg
taa

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