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MRE11 Polyclonal Antibody

规格: / 20μL / 60μL / 120μL / 200μL
价格: / ¥420 / ¥1010 / ¥1640 / ¥2365

货号:E-AB-15211

宿主: Rabbit

反应性: H,M,R

应用: IHC

  • 详情
  • Overview

    Synonyms AT like disease,Ataxia telangiectasia disorder like,ATLD,DNA recombination and repair protein,Double strand break repair protein MRE11A,Double-strand break repair protein MRE11A,endo/exonuclease Mre11,HNGS1,meiotic recombination (S. cerevisiae) 11 homolog A,Meiotic recombination 11 homolog 1,meiotic recombination 11 homolog A (S. cerevisiae),Meiotic recombination 11 homolog A,MmMRE11A,Mre 11,MRE 11a,MRE 11b,MRE11 homolog 1,MRE11 homolog A,MRE11 homolog double strand break repair nuclease,MRE11 meiotic recombination 11 homolog A (S. cerevisiae),MRE11 meiotic recombination 11 homolog A,MRE11,MRE11A,MRE11b,OTTHUMP00000236830,OTTHUMP00000236831,OTTHUMP00000236832,OTTHUMP00000236833,MRE11A抗体
    Swissprot P49959
    Source Rabbit
    Reactivity Human,Mouse,Rat
    Immunogen Recombinant protein of human MRE11A
    Application IHC(Detection kit: E-IR-R213)
    Recommended dilution IHC,,1:100-1:300
    Concentration 0.5 mg/mL
    Clonality Polyclonal

    Properties

    Cellular localization Nucleus. Localizes to discrete nuclear foci after treatment with genotoxic agents.
    Isotype IgG
    Purification Affinity purification
    Conjugation Unconjugated
    Storage instructions Store at -20℃. Avoid freeze / thaw cycles.
    Storage buffer PBS with 0.05% sodium azide, 50% glycerol, PH7.3
    Background This gene encodes a nuclear protein involved in homologous recombination, telomere length maintenance, and DNA double-strand break repair. By itself, the protein has 3' to 5' exonuclease activity and endonuclease activity. The protein forms a complex with the RAD50 homolog; this complex is required for nonhomologous joining of DNA ends and possesses increased single-stranded DNA endonuclease and 3' to 5' exonuclease activities. In conjunction with a DNA ligase, this protein promotes the joining of noncomplementary ends in vitro using short homologies near the ends of the DNA fragments. This gene has a pseudogene on chromosome 3. Alternative splicing of this gene results in two transcript variants encoding different isoforms.
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