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染色体黏连位点处的减数分裂重组冷点。

Meiotic recombination cold spots in chromosomal cohesion sites.

作者信息

Ito Masaru, Kugou Kazuto, Fawcett Jeffrey A, Mura Sachiko, Ikeda Sho, Innan Hideki, Ohta Kunihiro

机构信息

Department of Life Sciences, The University of Tokyo, Komaba 3-8-1, Meguro-ku, Tokyo 153-8902, Japan.

出版信息

Genes Cells. 2014 May;19(5):359-73. doi: 10.1111/gtc.12138. Epub 2014 Mar 17.

Abstract

Meiotic chromosome architecture called 'axis-loop structures' and histone modifications have been shown to regulate the Spo11-dependent formation of DNA double-strand breaks (DSBs) that trigger meiotic recombination. Using genome-wide chromatin immunoprecipitation (ChIP) analyses followed by deep sequencing, we compared the genome-wide distribution of the axis protein Rec8 (the kleisin subunit of meiotic cohesin) with that of oligomeric DNA covalently bound to Spo11, indicative of DSB sites. The frequency of DSB sites is overall constant between Rec8 binding sites. However, DSB cold spots are observed in regions spanning ±0.8 kb around Rec8 binding sites. The axis-associated cold spots are not due to the exclusion of Spo11 localization from the axis, because ChIP experiments showed that substantial Spo11 persists at Rec8 binding sites during DSB formation. Spo11 fused with Gal4 DNA binding domain (Gal4BD-Spo11) tethered in close proximity (≤0.8 kb) to Rec8 binding sites hardly forms meiotic DSBs, in contrast with other regions. In addition, H3K4 trimethylation (H3K4me3) remarkably decreases at Rec8 binding sites. These results suggest that reduced histone H3K4me3 in combination with inactivation of Spo11 activity on the axis discourages DSB hot spot formation.

摘要

被称为“轴-环结构”的减数分裂染色体结构和组蛋白修饰已被证明可调节引发减数分裂重组的DNA双链断裂(DSB)的Spo11依赖性形成。通过全基因组染色质免疫沉淀(ChIP)分析并随后进行深度测序,我们比较了轴蛋白Rec8(减数分裂黏连蛋白的kleisin亚基)与共价结合到Spo11的寡聚DNA(指示DSB位点)在全基因组范围内的分布。DSB位点的频率在Rec8结合位点之间总体上是恒定的。然而,在Rec8结合位点周围±0.8 kb范围内的区域观察到DSB冷点。与轴相关的冷点并非由于轴上排除了Spo11定位,因为ChIP实验表明在DSB形成过程中大量Spo11持续存在于Rec8结合位点。与其他区域相比,与Gal4 DNA结合域融合(Gal4BD-Spo11)并紧密连接(≤0.8 kb)到Rec8结合位点的Spo11几乎不形成减数分裂DSB。此外,H3K4三甲基化(H3K4me3)在Rec&结合位点显著减少。这些结果表明,组蛋白H3K4me3减少,结合轴上Spo11活性失活,不利于DSB热点形成。

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