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Analysis of the 4q35 chromatin organization reveals distinct long-range interactions in patients affected with Facio-Scapulo-Humeral Dystrophy

机译:对4q35染色质组织的分析显示受面部肩S肱骨营养不良影响的患者有明显的远距离相互作用

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摘要

Facio-Scapulo Humeral dystrophy (FSHD) is the third most common myopathy, affecting 1 amongst 10,000 individuals (FSHD1, OMIM #158900). This autosomal dominant pathology is associated in 95% of cases with genetic and epigenetic alterations in the subtelomeric region at the extremity of the long arm of chromosome 4 (q arm). A large proportion of the remaining 5% of cases carry a mutation in the SMCHD1 gene (FSHD2, OMIM #158901). Here, we explored the 3D organization of the 4q35 locus by three-dimensions DNA in situ fluorescent hybridization (3D-FISH) in primary fibroblasts isolated from patients and healthy donors. We found that D4Z4 contractions and/or SMCHD1 mutations impact the spatial organization of the 4q35 region and trigger changes in the expression of different genes. Changes in gene expression were corroborated in muscle biopsies suggesting that the modified chromatin landscape impelled a modulation in the level of expression of a number of genes across the 4q35 locus in FSHD. Using induced pluripotent stem cells (hIPSC), we further examined whether chromatin organization is inherited after reprogramming or acquired during differentiation and showed that folding of the 4q35 region is modified upon differentiation. These results together with previous findings highlight the role of the D4Z4 macrosatellite repeat in the topological organization of chromatin and further indicate that the D4Z4-dependent 3D structure induces transcriptional changes of 4q35 genes expression.
机译:肩S肩肱型肌营养不良症(FSHD)是第三常见的肌病,在10,000个人中影响1(FSHD1,OMIM#158900)。在95%的病例中,这种常染色体显性病理与4号染色体长臂(q臂)末端的亚端粒区域的遗传和表观遗传学改变有关。在其余5%的病例中,很大一部分携带SMCHD1基因突变(FSHD2,OMIM#158901)。在这里,我们通过从患者和健康供体中分离出的原代成纤维细胞中的三维DNA原位荧光杂交(3D-FISH)探索了4q35基因座的3D组织。我们发现D4Z4收缩和/或SMCHD1突变影响4q35区的空间组织,并触发不同基因表达的变化。在肌肉活检中证实了基因表达的变化,表明修饰的染色质景观促进了FSHD中整个4q35基因座的许多基因表达水平的调节。使用诱导性多能干细胞(hIPSC),我们进一步检查了染色质组织是否在重编程后继承或在分化过程中获得,并显示了分化后修饰了4q35区的折叠。这些结果与以前的发现一起凸显了D4Z4大卫星重复序列在染色质拓扑结构中的作用,并进一步表明D4Z4依赖性3D结构诱导4q35基因表达的转录变化。

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