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Genome maintenance functions of the INO80 chromatin remodeller

机译:INO80染色质remodeller的基因组维护功能

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摘要

Chromatin modification is conserved in all eukaryotes and is required to facilitate and regulate DNA-templated processes. For example, chromatin manipulation, such as histone post-translational modification and nucleosome positioning, play critical roles in genome stability pathways. The INO80 chromatin- remodelling complex, which regulates the abundance and positioning of nucleosomes, is particularly important for proper execution of inducible responses to DNA damage. This review discusses the participation and activity of the INO80 complex in DNA repair and cell cycle checkpoint pathways, with emphasis on the Saccharomyces cerevisiae model system. Furthermore, the role of ATM/ATR kinases, central regulators of DNA damage signalling, in the regulation of INO80 function will be reviewed. In addition, emerging themes of chromatin remodelling in mitotic stability pathways and chromosome segregation will be introduced. These studies are critical to understanding the dynamic chromatin landscape that is rapidly and reversibly modified to maintain the integrity of the genome.
机译:染色质修饰在所有真核生物中保存,并且需要促进和调节DNA模板化过程。例如,染色质操作,例如组蛋白后翻译修饰和核小体定位,在基因组稳定性途径中起重要作用。调节核肉的丰度和定位的InO80染色质复合物,对于适当执行对DNA损伤的诱导反应尤为重要。本综述讨论了INO80复合物在DNA修复和细胞周期检查点途径中的参与和活动,重点是酿酒酵母模型系统。此外,在INO80功能调节中,DNA损伤信号传导中央调节剂中央调节剂的作用将被审查。此外,将介绍染色体稳定性途径和染色体隔离中的染色质重塑的新出现主题。这些研究对于了解迅速和可逆地修饰的动态染色质景观至关重要以保持基因组的完整性。

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