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Dynein pulling forces counteract lamin-mediated nuclear stability during nuclear envelope repair

机译:Dynein拉力抵消了核蛋白包膜修复过程中层粘连蛋白介导的核稳定性

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摘要

Recent work done exclusively in tissue culture cells revealed that the nuclear envelope (NE) ruptures and repairs in interphase. The duration of NE ruptures depends on lamins; however, the underlying mechanisms and relevance to in vivo events are not known. Here, we use the Caenorhabditis elegans zygote to analyze lamin’s role in NE rupture and repair in vivo. Transient NE ruptures and subsequent NE collapse are induced by weaknesses in the nuclear lamina caused by expression of an engineered hypomorphic C. elegans lamin allele. Dynein-generated forces that position nuclei enhance the severity of transient NE ruptures and cause NE collapse. Reduction of dynein forces allows the weakened lamin network to restrict nucleo–cytoplasmic mixing and support stable NE recovery. Surprisingly, the high incidence of transient NE ruptures does not contribute to embryonic lethality, which is instead correlated with stochastic chromosome scattering resulting from premature NE collapse, suggesting that C. elegans tolerates transient losses of NE compartmentalization during early embryogenesis. In sum, we demonstrate that lamin counteracts dynein forces to promote stable NE repair and prevent catastrophic NE collapse, and thus provide the first mechanistic analysis of NE rupture and repair in an organismal context.
机译:专门在组织培养细胞中进行的最新研究表明,核膜(NE)在相间破裂和修复。 NE破裂的持续时间取决于椎板。然而,尚不清楚其与体内事件的潜在机制和相关性。在这里,我们使用秀丽隐杆线虫合子来分析lamin在体内NE破裂和修复中的作用。暂时性NE破裂和随后的NE塌陷是由工程改造的亚型秀丽隐杆线虫层状等位基因表达引起的核层薄弱引起的。动力蛋白产生的定位核的力会增强瞬态NE破裂的严重程度,并导致NE塌陷。降低动力蛋白的力会使薄层网络减弱,从而限制核质混合并支持稳定的NE恢复。出人意料的是,瞬时NE破裂的高发生率并没有促进胚胎致死性,而与致死性NE崩溃所导致的随机染色体散射相关,这表明秀丽隐杆线虫耐受早期胚胎发生期间NE分隔的瞬时损失。总而言之,我们证明核纤层蛋白可以抵消动力蛋白的力,从而促进稳定的NE修复并防止灾难性的NE塌陷,从而提供了在机体环境下NE破裂和修复的首个机理分析。

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