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拟南芥 SWR1 染色质重塑复合物对于 DNA 修复、体细胞重组和减数分裂很重要。

The Arabidopsis SWR1 chromatin-remodeling complex is important for DNA repair, somatic recombination, and meiosis.

机构信息

Gregor Mendel Institute of Molecular Plant Biology, Austrian Academy of Sciences, 1030 Viena, Austria.

出版信息

Plant Cell. 2013 Jun;25(6):1990-2001. doi: 10.1105/tpc.112.104067. Epub 2013 Jun 18.

Abstract

All processes requiring interaction with DNA are attuned to occur within the context of the complex chromatin structure. As it does for programmed transcription and replication, this also holds true for unscheduled events, such as repair of DNA damage. Lesions such as double-strand breaks occur randomly; their repair requires that enzyme complexes access DNA at potentially any genomic site. This is achieved by chromatin remodeling factors that can locally slide, evict, or change nucleosomes. Here, we show that the Swi2/Snf2-related (SWR1 complex), known to deposit histone H2A.Z, is also important for DNA repair in Arabidopsis thaliana. Mutations in genes for Arabidopsis SWR1 complex subunits photoperiod-independent Early Flowering1, actin-related protein6, and SWR1 complex6 cause hypersensitivity to various DNA damaging agents. Even without additional genotoxic stress, these mutants show symptoms of DNA damage accumulation. The reduced DNA repair capacity is connected with impaired somatic homologous recombination, in contrast with the hyper-recombinogenic phenotype of yeast SWR1 mutants. This suggests functional diversification between lower and higher eukaryotes. Finally, reduced fertility and irregular gametogenesis in the Arabidopsis SWR1 mutants indicate an additional role for the chromatin-remodeling complex during meiosis. These results provide evidence for the importance of Arabidopsis SWR1 in somatic DNA repair and during meiosis.

摘要

所有需要与 DNA 相互作用的过程都适应发生在复杂的染色质结构的背景下。对于有计划的转录和复制是如此,对于无计划的事件,如 DNA 损伤修复也是如此。双链断裂等损伤随机发生;它们的修复需要酶复合物在潜在的任何基因组位点上接近 DNA。这是通过染色质重塑因子来实现的,这些因子可以局部滑动、驱逐或改变核小体。在这里,我们表明,已知沉积组蛋白 H2A.Z 的 Swi2/Snf2 相关(SWR1 复合物)对于拟南芥中的 DNA 修复也很重要。拟南芥 SWR1 复合物亚基光周期非依赖性早期开花 1、肌动蛋白相关蛋白 6 和 SWR1 复合物 6 的基因突变导致对各种 DNA 损伤剂的敏感性增加。即使没有额外的遗传毒性应激,这些突变体也表现出 DNA 损伤积累的症状。降低的 DNA 修复能力与体细胞同源重组受损有关,而与酵母 SWR1 突变体的高重组表型形成对比。这表明在较低和较高的真核生物之间存在功能多样化。最后,拟南芥 SWR1 突变体的生育能力降低和配子发生不规则表明染色质重塑复合物在减数分裂过程中的额外作用。这些结果为 SWR1 在体细胞 DNA 修复和减数分裂过程中的重要性提供了证据。

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