MeCP2 deficiency leads to the γH2AX nano foci expansion after ionizing radiation

IF 3 3区 生物学 Q2 GENETICS & HEREDITY DNA Repair Pub Date : 2025-01-01 DOI:10.1016/j.dnarep.2024.103790
Hikaru Okumura , Ryota Hayashi , Daiki Unami , Mayu Isono , Motohiro Yamauchi , Kensuke Otsuka , Yu Kato , Takahiro Oike , Yuki Uchihara , Atsushi Shibata
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Abstract

DNA double-strand breaks (DSBs) trigger the recruitment of repair protein and promote signal transduction through posttranslational modifications such as phosphorylation. After DSB induction, ataxia telangiectasia mutated (ATM) phosphorylates H2AX on chromatin surrounds the mega-base pairs proximal to the DSBs. Advanced super-resolution microscopic technology has demonstrated the formation of γH2AX nano foci as a unit of nano domain comprised of multiple nucleosomes. The formation of γH2AX nano foci could be potentially affected by pre-existing chromatin structure prior to DSB induction; however, it remains unclear whether chromatin status around DSBs influences the formation of γH2AX nano foci. In this study, to investigate γH2AX nano foci formation in the context of chromatin relaxation, γH2AX nano foci were examined following the depletion of MeCP2, which is a factor promoting chromatin condensation. Remarkably, by using super-resolution imaging analysis, we found that the volume of γH2AX nano foci cluster in MeCP2-depleted cells was significantly greater than that in control cells, both 5 and 30 min after ionizing radiation (IR). Corresponding to the increased volume size, the number of γH2AX nano foci per cluster was greater than that in control cells, while the distance of each nano focus within foci clusters remained unchanged. These findings suggest that relaxed chromatin condition by MeCP2 depletion facilitates faster and more extensive γH2AX nano foci formation after IR. Collectively, our super-resolution analysis suggests that the chromatin status surrounding DSBs influences the expansion of γH2AX nano foci formation, thus, potentially influencing the DSB repair and signaling.
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MeCP2缺乏导致电离辐射后γ - h2ax纳米焦扩展。
DNA双链断裂(DSBs)触发修复蛋白募集,并通过磷酸化等翻译后修饰促进信号转导。在DSB诱导后,共济失调毛细血管扩张突变(ATM)使DSB近端巨碱基对周围染色质上的H2AX磷酸化。先进的超分辨率显微技术证明了γ - h2ax纳米焦是由多个核小体组成的纳米结构域单元。γ - h2ax纳米焦的形成可能受到DSB诱导前染色质结构的潜在影响;然而,尚不清楚dsb周围的染色质状态是否影响γ - h2ax纳米灶的形成。在本研究中,为了研究γ - h2ax纳米聚焦在染色质松弛背景下的形成,我们在MeCP2缺失后检测了γ - h2ax纳米聚焦,MeCP2是促进染色质凝聚的因子。值得注意的是,通过超分辨率成像分析,我们发现在电离辐射(IR)后5和30 min, mecp2缺失的细胞中γ - h2ax纳米聚焦团的体积明显大于对照细胞。与体积大小的增加相对应,每个簇中γ - h2ax纳米焦点的数量大于对照细胞,而每个簇内纳米焦点的距离保持不变。这些发现表明,MeCP2耗竭使染色质条件放松,有助于红外后γ - h2ax纳米灶形成更快、更广泛。总之,我们的超分辨率分析表明,DSB周围的染色质状态影响了γ - h2ax纳米病灶形成的扩展,从而可能影响DSB的修复和信号传导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
DNA Repair
DNA Repair 生物-毒理学
CiteScore
7.60
自引率
5.30%
发文量
91
审稿时长
59 days
期刊介绍: DNA Repair provides a forum for the comprehensive coverage of DNA repair and cellular responses to DNA damage. The journal publishes original observations on genetic, cellular, biochemical, structural and molecular aspects of DNA repair, mutagenesis, cell cycle regulation, apoptosis and other biological responses in cells exposed to genomic insult, as well as their relationship to human disease. DNA Repair publishes full-length research articles, brief reports on research, and reviews. The journal welcomes articles describing databases, methods and new technologies supporting research on DNA repair and responses to DNA damage. Letters to the Editor, hot topics and classics in DNA repair, historical reflections, book reviews and meeting reports also will be considered for publication.
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