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Fe65 is required for Tip60-directed histone H4 acetylation at DNA strand breaks

机译:Tip65定向的组蛋白H4在DNA链断裂时需要Fe65

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摘要

Fe65 is a binding partner of the Alzheimer's β-amyloid precursor protein APP. The possible involvement of this protein in the cellular response to DNA damage was suggested by the observation that Fe65 null mice are more sensitive to genotoxic stress than WT counterpart. Fe65 associated with chromatin under basal conditions and its involvement in DNA damage repair requires this association. A known partner of Fe65 is the histone acetyltransferase Tip60. Considering the crucial role of Tip60 in DNA repair, we explored the hypothesis that the phenotype of Fe65 null cells depended on its interaction with Tip60. We demonstrated that Fe65 knockdown impaired recruitment of Tip60-TRRAP complex to DNA double strand breaks and decreased histone H4 acetylation. Accordingly, the efficiency of DNA repair was decreased upon Fe65 suppression. To explore whether APP has a role in this mechanism, we analyzed a Fe65 mutant unable to bind to APP. This mutant failed to rescue the phenotypes of Fe65 null cells; furthermore, APP/APLP2 suppression results in the impairment of recruitment of Tip60-TRRAP complex to DNA double strand breaks, decreased histone H4 acetylation and repair efficiency. On these bases, we propose that Fe65 and its interaction with APP play an important role in the response to DNA damage by assisting the recruitment of Tip60-TRRAP to DNA damage sites.
机译:Fe65是阿尔茨海默氏症的β-淀粉样蛋白前体蛋白APP的结合伴侣。 Fe65无效小鼠对遗传毒性应激的敏感性高于野生型,这提示该蛋白可能参与了细胞对DNA损伤的反应。在基础条件下与染色质相关的Fe65及其参与DNA损伤修复的过程需要这种关联。 Fe65的已知伴侣是组蛋白乙酰转移酶Tip60。考虑到Tip60在DNA修复中的关键作用,我们探索了Fe65空细胞表型取决于其与Tip60相互作用的假说。我们证明,Fe65敲低会损害Tip60-TRRAP复合物向DNA双链断裂的募集并降低组蛋白H4乙酰化。因此,抑制Fe65后DNA修复效率降低。为了探讨APP是否在此机制中起作用,我们分析了无法与APP结合的Fe65突变体。该突变体未能挽救Fe65空细胞的表型。此外,APP / APLP2抑制导致Tip60-TRRAP复合物募集到DNA双链断裂,组蛋白H4乙酰化和修复效率降低。在这些基础上,我们建议Fe65及其与APP的相互作用通过协助将Tip60-TRRAP募集至DNA损伤位点而在对DNA损伤的应答中起重要作用。

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