The Walter and Eliza Hall Institute of Medical Research, Melbourne, VIC, Australia.
The Department of Medical Biology, University of Melbourne, Melbourne, VIC, Australia.
Nat Commun. 2023 Sep 25;14(1):5466. doi: 10.1038/s41467-023-40992-6.
The interplay between 3D chromatin architecture and gene silencing is incompletely understood. Here, we report a novel point mutation in the non-canonical SMC protein SMCHD1 that enhances its silencing capacity at endogenous developmental targets. Moreover, it also results in enhanced silencing at the facioscapulohumeral muscular dystrophy associated macrosatellite-array, D4Z4, resulting in enhanced repression of DUX4 encoded by this repeat. Heightened SMCHD1 silencing perturbs developmental Hox gene activation, causing a homeotic transformation in mice. Paradoxically, the mutant SMCHD1 appears to enhance insulation against other epigenetic regulators, including PRC2 and CTCF, while depleting long range chromatin interactions akin to what is observed in the absence of SMCHD1. These data suggest that SMCHD1's role in long range chromatin interactions is not directly linked to gene silencing or insulating the chromatin, refining the model for how the different levels of SMCHD1-mediated chromatin regulation interact to bring about gene silencing in normal development and disease.
三维染色质结构与基因沉默之间的相互作用尚不完全清楚。在这里,我们报道了一种非典型 SMC 蛋白 SMCHD1 的新点突变,该突变增强了其在内源性发育靶标上的沉默能力。此外,它还导致与面肩肱型肌营养不良症相关的大片段-array(D4Z4)的增强沉默,从而增强了由该重复编码的 DUX4 的抑制。增强的 SMCHD1 沉默扰乱了发育中的 Hox 基因激活,导致小鼠发生同源性转换。矛盾的是,突变的 SMCHD1 似乎增强了对其他表观遗传调节剂(包括 PRC2 和 CTCF)的隔离,同时耗尽了类似于在没有 SMCHD1 时观察到的长距离染色质相互作用。这些数据表明,SMCHD1 在长距离染色质相互作用中的作用与基因沉默或隔离染色质无关,从而完善了不同水平的 SMCHD1 介导的染色质调节如何相互作用以在正常发育和疾病中实现基因沉默的模型。