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CHMPions of repair: Emerging perspectives on sensing and repairing the nuclear envelope barrier

机译:维修冠军:新兴的传感和修复核封屏障的视角

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Understanding how the integrity of the nuclear membranes is protected against internal and external stresses is an emergent challenge. Work reviewed here investigated the mechanisms by which losses of nuclear-cytoplasmic compartmentalization are sensed and ameliorated. Fundamental to these is spatial control over interactions between the endosomal sorting complexes required for transport machinery and LAP2-emerin-MAN1 family inner nuclear membrane proteins, which together promote nuclear envelope sealing in interphase and at the end of mitosis. We suggest that the size of the nuclear envelope hole dictates the mechanism of its repair, with larger holes requiring barrier-to-autointegration factor and the potential triggering of a postmitotic nuclear envelope reassembly pathway in interphase. We also consider why these mechanisms fail at ruptured micronuclei. Together, this work re-emphasizes the need to understand how membrane flow and local lipid metabolism help ensure that the nuclear envelope is refractory to mechanical rupture yet fluid enough to allow its essential dynamics.
机译:了解如何保护核膜的完整性免受内部和外部压力是一种紧急挑战。这里审查的工作研究了感官和改善核 - 细胞质隔室损失的机制。这些基础是用于运输机械和LAP2-Emerin-Man1家族内核膜蛋白所需的内体分选复合物之间的相互作用的空间控制,该核膜蛋白在一起促进核包封密封在间作和有丝分裂结束时。我们建议核封孔的尺寸决定了其修复的机制,具有较大的孔,需要障碍 - 自动集成因子以及在间间重组后的核心包膜重新组装途径的潜在触发。我们还考虑为什么这些机制在破裂的微核处失败。这项工作在一起重新强调需要了解膜流动和局部脂质代谢有助于确保核心封闭对机械破裂的难以达到足以允许其基本动态的难以实现的。

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