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多梳抑制复合物1为面肩肱型肌营养不良症中重复序列拷贝数依赖性提供了分子解释。

Polycomb repressive complex 1 provides a molecular explanation for repeat copy number dependency in FSHD muscular dystrophy.

作者信息

Casa Valentina, Runfola Valeria, Micheloni Stefano, Aziz Arif, Dilworth F Jeffrey, Gabellini Davide

机构信息

Gene Expression and Muscular Dystrophy Unit, Division of Regenerative Medicine, IRCCS San Raffaele Scientific Institute, Milan 20132, Italy.

Università Vita-Salute San Raffaele, Milan 20132, Italy.

出版信息

Hum Mol Genet. 2017 Feb 15;26(4):753-767. doi: 10.1093/hmg/ddw426.

Abstract

Repression of repetitive elements is crucial to preserve genome integrity and has been traditionally ascribed to constitutive heterochromatin pathways. FacioScapuloHumeral Muscular Dystrophy (FSHD), one of the most common myopathies, is characterized by a complex interplay of genetic and epigenetic events. The main FSHD form is linked to a reduced copy number of the D4Z4 macrosatellite repeat on 4q35, causing loss of silencing and aberrant expression of the D4Z4-embedded DUX4 gene leading to disease. By an unknown mechanism, D4Z4 copy-number correlates with FSHD phenotype. Here we show that the DUX4 proximal promoter (DUX4p) is sufficient to nucleate the enrichment of both constitutive and facultative heterochromatin components and to mediate a copy-number dependent gene silencing. We found that both the CpG/GC dense DNA content and the repetitive nature of DUX4p arrays are important for their repressive ability. We showed that DUX4p mediates a copy number-dependent Polycomb Repressive Complex 1 (PRC1) recruitment, which is responsible for the copy-number dependent gene repression. Overall, we directly link genetic and epigenetic defects in FSHD by proposing a novel molecular explanation for the copy number-dependency in FSHD pathogenesis, and offer insight into the molecular functions of repeats in chromatin regulation.

摘要

抑制重复元件对于维持基因组完整性至关重要,传统上认为这归因于组成型异染色质途径。面肩肱型肌营养不良症(FSHD)是最常见的肌病之一,其特征是遗传和表观遗传事件的复杂相互作用。主要的FSHD形式与4q35上D4Z4大卫星重复序列的拷贝数减少有关,导致沉默丧失以及嵌入D4Z4的DUX4基因异常表达,进而引发疾病。通过一种未知机制,D4Z4拷贝数与FSHD表型相关。在这里,我们表明DUX4近端启动子(DUX4p)足以促使组成型和兼性异染色质成分富集,并介导拷贝数依赖性基因沉默。我们发现,DUX4p阵列的CpG/GC密集DNA含量和重复性质对其抑制能力都很重要。我们表明,DUX4p介导拷贝数依赖性多梳抑制复合物1(PRC1)的募集,这负责拷贝数依赖性基因抑制。总体而言,我们通过为FSHD发病机制中的拷贝数依赖性提出一种新的分子解释,直接将FSHD中的遗传和表观遗传缺陷联系起来,并深入了解重复序列在染色质调控中的分子功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/47bd/5409123/37da922a86a5/ddw426f1.jpg

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