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DNA 焦点的先天结构限制了来自不同染色体区域的 DNA 的混合。

Innate structure of DNA foci restricts the mixing of DNA from different chromosome territories.

机构信息

Faculty of Life Sciences, University of Manchester, Manchester, United Kingdom.

出版信息

PLoS One. 2011;6(12):e27527. doi: 10.1371/journal.pone.0027527. Epub 2011 Dec 21.

Abstract

The distribution of chromatin within the mammalian nucleus is constrained by its organization into chromosome territories (CTs). However, recent studies have suggested that promiscuous intra- and inter-chromosomal interactions play fundamental roles in regulating chromatin function and so might define the spatial integrity of CTs. In order to test the extent of DNA mixing between CTs, DNA foci of individual CTs were labeled in living cells following incorporation of Alexa-488 and Cy-3 conjugated replication precursor analogues during consecutive cell cycles. Uniquely labeled chromatin domains, resolved following random mitotic segregation, were visualized as discrete structures with defined borders. At the level of resolution analysed, evidence for mixing of chromatin from adjacent domains was only apparent within the surface volumes where neighboring CTs touched. However, while less than 1% of the nuclear volume represented domains of inter-chromosomal mixing, the dynamic plasticity of DNA foci within individual CTs allows continual transformation of CT structure so that different domains of chromatin mixing evolve over time. Notably, chromatin mixing at the boundaries of adjacent CTs had little impact on the innate structural properties of DNA foci. However, when TSA was used to alter the extent of histone acetylation changes in chromatin correlated with increased chromatin mixing. We propose that DNA foci maintain a structural integrity that restricts widespread mixing of DNA and discuss how the potential to dynamically remodel genome organization might alter during cell differentiation.

摘要

哺乳动物核内染色质的分布受到其组织成染色体区域(CTs)的限制。然而,最近的研究表明,杂乱无章的内染色体和染色体间相互作用在调节染色质功能方面起着至关重要的作用,因此可能定义了 CT 的空间完整性。为了测试 CT 之间 DNA 混合的程度,在连续的细胞周期中,在用 Alexa-488 和 Cy-3 缀合的复制前体类似物掺入后,在活细胞中标记单个 CT 的 DNA 焦点。在随机有丝分裂分离后解析出唯一标记的染色质域,被可视化成具有定义边界的离散结构。在分析的分辨率水平上,只有在相邻 CT 接触的表面体积内,才能明显看出来自相邻域的染色质混合的证据。然而,虽然不到核体积的 1%表示染色体间混合的域,但单个 CT 内 DNA 焦点的动态可塑性允许 CT 结构的持续转化,从而使染色质混合的不同域随时间演变。值得注意的是,相邻 CT 边界处的染色质混合对 DNA 焦点的固有结构特性几乎没有影响。然而,当 TSA 用于改变与染色质混合增加相关的组蛋白乙酰化变化的程度时。我们提出 DNA 焦点保持结构完整性,限制 DNA 的广泛混合,并讨论在细胞分化过程中,动态重塑基因组组织的潜力如何发生变化。

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