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在复制起点激活过程中,通过组蛋白H3的翻译后修饰实现染色质结构的动态变化。

Dynamic changes in chromatin structure through post-translational modifications of histone H3 during replication origin activation.

作者信息

Rampakakis E, Di Paola D, Chan M K, Zannis-Hadjopoulos M

机构信息

Rosalind and Morris Goodman Cancer Center, Department of Biochemistry, McGill University, Montreal, Quebec, Canada H3A 1A3.

出版信息

J Cell Biochem. 2009 Oct 1;108(2):400-7. doi: 10.1002/jcb.22266.

Abstract

Genome duplication relies on the timely activation of multiple replication origins throughout the genome during S phase. Each origin is marked by the assembly of a multiprotein pre-replication complex (pre-RC) and the recruitment of the replicative machinery, which can gain access to replication origins on the DNA through the barrier of specific chromatin structures. Inheritance of the genetic information is further accompanied by maintenance and inheritance of the epigenetic marks, which are accomplished by the activity of histone and DNA modifying enzymes traveling with the replisome. Here, we studied the changes in the chromatin structure at the loci of three replication origins, the early activated human lamin B2 (LB2) and monkey Ors8 (mOrs8) origins and the late-activated human homologue of the latter (hOrs8), during their activation, by measuring the abundance of post-translationally modified histone H3. The data show that dynamic changes in the levels of acetylated, methylated and phosphorylated histone H3 occur during the initiation of DNA replication at these three origin loci, which differ between early- and late-firing origins as well as between human- and monkey-derived cell lines. These results suggest that specific histone modifications are associated with origin firing, temporal activation and replication fork progression and underscore the importance of species specificity.

摘要

基因组复制依赖于在S期整个基因组中多个复制起点的及时激活。每个起点都由多蛋白前复制复合体(pre-RC)的组装以及复制机器的招募来标记,复制机器能够通过特定染色质结构的屏障进入DNA上的复制起点。遗传信息的传递还伴随着表观遗传标记的维持和遗传,这是由与复制体一起移动的组蛋白和DNA修饰酶的活性来完成的。在这里,我们通过测量翻译后修饰的组蛋白H3的丰度,研究了三个复制起点(早期激活的人类lamin B2(LB2)和猴Ors8(mOrs8)起点以及后者的晚期激活的人类同源物(hOrs8))在激活过程中染色质结构的变化。数据表明,在这三个起点位点的DNA复制起始过程中,乙酰化、甲基化和磷酸化组蛋白H3的水平发生了动态变化,这些变化在早期和晚期激活的起点之间以及人类和猴源细胞系之间有所不同。这些结果表明,特定的组蛋白修饰与起点激活、时间激活和复制叉进展相关,并强调了物种特异性的重要性。

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