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Histone chaperone activity of Arabidopsis thaliana NRP1 is blocked by cytochrome c

机译:拟南芥拟南芥NRP1的组蛋白伴侣活性被细胞色素C阻断

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摘要

Higher-order plants and mammals use similar mechanisms to repair and tolerate oxidative DNA damage. Most studies on the DNA repair process have focused on yeast and mammals, in which histone chaperone-mediated nucleosome disassembly/reassembly is essential for DNA to be accessible to repair machinery. However, little is known about the specific role and modulation of histone chaperones in the context of DNA damage in plants. Here, the histone chaperone NRP1, which is closely related to human SET/TAF-I beta, was found to exhibit nucleosome assembly activity in vitro and to accumulate in the chromatin of Ara-bidopsis thaliana after DNA breaks. In addition, this work establishes that NRP1 binds to cytochrome c, thereby preventing the former from binding to histones. Since NRP1 interacts with cytochrome c at its earmuff domain, that is, its histone-binding domain, cytochrome c thus competes with core histones and hampers the activity of NRP1 as a histone chaperone. Altogether, the results obtained indicate that the underlying molecularmechanisms in nucleosome disassembly/reassembly are highly conserved throughout evolution, as inferred from the similar inhibition of plant NRP1 and human SET/TAF-I beta by cytochrome c during DNA damage response.
机译:高阶植物和哺乳动物使用类似的机制来修复和耐受氧化DNA损伤。大多数关于DNA修复过程的研究都集中在酵母和哺乳动物上,其中组蛋白伴伴介导的核小体拆卸/重组对于DNA可以接近修复机械。然而,关于在植物DNA损伤的情况下,组蛋白伴侣的特定作用和调制少。这里,与人置/ TAF-Iβ密切相关的组蛋白伴侣NRP1在DNA断裂后在体外表现出体外核心组装活性,并在ARA-Bidopsis Thilana的染色质中积聚。此外,该工作确定NRP1与细胞色素C结合,从而防止前者与组蛋白结合。由于NRP1与其耳罩结构域的细胞色素C相互作用,即其组蛋白结合结构域,细胞色素C与核心组蛋白竞争,并且妨碍NRP1的活性作为组蛋白伴侣。总共,获得的结果表明,核心拆卸/重新组装中的底层分子机制在整个进化中受到高度保守,从植物NRP1和人置/ TAF-Iβ在DNA损伤反应期间从植物NRP1和人置/ TAF-Iβ的类似抑制中推断出来。

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  • 来源
    《Nucleic Acids Research》 |2017年第4期|共16页
  • 作者单位

    Univ Seville Inst Chem Res IIQ Isla Cartuja Sci Res Ctr CicCartuja Spanish Natl Res Council CSIC Avda Americo Vespucio 49 Seville 41092 Spain;

    Univ Seville Inst Chem Res IIQ Isla Cartuja Sci Res Ctr CicCartuja Spanish Natl Res Council CSIC Avda Americo Vespucio 49 Seville 41092 Spain;

    Univ Seville Inst Chem Res IIQ Isla Cartuja Sci Res Ctr CicCartuja Spanish Natl Res Council CSIC Avda Americo Vespucio 49 Seville 41092 Spain;

    Univ Zaragoza Inst Biocomputat &

    Phys Complex Syst BIFI Joint Unit Inst Phys Chem Rocasolano IQFR BIFI Spanish Natl Res Council CSIC Mariano Esquillor S-N Zaragoza 50018 Spain;

    Univ Seville Inst Chem Res IIQ Isla Cartuja Sci Res Ctr CicCartuja Spanish Natl Res Council CSIC Avda Americo Vespucio 49 Seville 41092 Spain;

    Univ Seville Inst Chem Res IIQ Isla Cartuja Sci Res Ctr CicCartuja Spanish Natl Res Council CSIC Avda Americo Vespucio 49 Seville 41092 Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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