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长爪沙鼠(Meriones unguiculatus)减数分裂过程中间质端粒位点的染色质组织与重塑

Chromatin organization and remodeling of interstitial telomeric sites during meiosis in the Mongolian gerbil (Meriones unguiculatus).

作者信息

de la Fuente Roberto, Manterola Marcia, Viera Alberto, Parra María Teresa, Alsheimer Manfred, Rufas Julio S, Page Jesús

机构信息

Departamento de Biología, Universidad Autónoma de Madrid, Madrid 28049, Spain.

Department of Genetics and Development, Columbia University Medical Center, New York, New York 10032.

出版信息

Genetics. 2014 Aug;197(4):1137-51. doi: 10.1534/genetics.114.166421. Epub 2014 Jun 6.

Abstract

Telomeric DNA repeats are key features of chromosomes that allow the maintenance of integrity and stability in the telomeres. However, interstitial telomere sites (ITSs) can also be found along the chromosomes, especially near the centromere, where they may appear following chromosomal rearrangements like Robertsonian translocations. There is no defined role for ITSs, but they are linked to DNA damage-prone sites. We were interested in studying the structural organization of ITSs during meiosis, a kind of cell division in which programmed DNA damage events and noticeable chromatin reorganizations occur. Here we describe the presence of highly amplified ITSs in the pericentromeric region of Mongolian gerbil (Meriones unguiculatus) chromosomes. During meiosis, ITSs show a different chromatin conformation than DNA repeats at telomeres, appearing more extended and accumulating heterochromatin markers. Interestingly, ITSs also recruit the telomeric proteins RAP1 and TRF1, but in a stage-dependent manner, appearing mainly at late prophase I stages. We did not find a specific accumulation of DNA repair factors to the ITSs, such as γH2AX or RAD51 at these stages, but we could detect the presence of MLH1, a marker for reciprocal recombination. However, contrary to previous reports, we did not find a specific accumulation of crossovers at ITSs. Intriguingly, some centromeric regions of metacentric chromosomes may bind the nuclear envelope through the association to SUN1 protein, a feature usually performed by telomeres. Therefore, ITSs present a particular and dynamic chromatin configuration in meiosis, which could be involved in maintaining their genetic stability, but they additionally retain some features of distal telomeres, provided by their capability to associate to telomere-binding proteins.

摘要

端粒DNA重复序列是染色体的关键特征,可维持端粒的完整性和稳定性。然而,染色体间端粒位点(ITSs)也可沿染色体发现,尤其是在着丝粒附近,在罗伯逊易位等染色体重排后可能出现。ITSs的作用尚无明确界定,但它们与易发生DNA损伤的位点有关。我们感兴趣的是研究减数分裂过程中ITSs的结构组织,减数分裂是一种细胞分裂过程,其中会发生程序性DNA损伤事件和明显的染色质重组。在此,我们描述了在蒙古沙鼠(Meriones unguiculatus)染色体的着丝粒周围区域存在高度扩增的ITSs。在减数分裂过程中,ITSs呈现出与端粒处DNA重复序列不同的染色质构象,显得更加伸展并积累异染色质标记。有趣的是,ITSs还招募端粒蛋白RAP1和TRF1,但呈阶段依赖性,主要出现在减数第一次分裂前期的后期阶段。在这些阶段,我们未发现DNA修复因子如γH2AX或RAD51在ITSs处有特异性积累,但我们能检测到MLH1的存在,它是相互重组的标记。然而,与先前报道相反,我们未在ITSs处发现交叉的特异性积累。有趣的是,中着丝粒染色体的一些着丝粒区域可能通过与SUN1蛋白的结合而与核膜相连,这一特征通常由端粒执行。因此,ITSs在减数分裂中呈现出特殊且动态的染色质构型,这可能参与维持其遗传稳定性,但它们还保留了一些远端端粒的特征,这是由它们与端粒结合蛋白结合的能力所赋予的。

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