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核孔的细胞内结构及其周转的快照。

In-cell architecture of the nuclear pore and snapshots of its turnover.

机构信息

Structural and Computational Biology Unit, European Molecular Biology Laboratory, Heidelberg, Germany.

Collaboration for joint PhD degree between EMBL and Heidelberg University, Faculty of Biosciences, Heidelberg, Germany.

出版信息

Nature. 2020 Oct;586(7831):796-800. doi: 10.1038/s41586-020-2670-5. Epub 2020 Sep 2.

Abstract

Nuclear pore complexes (NPCs) fuse the inner and outer membranes of the nuclear envelope. They comprise hundreds of nucleoporins (Nups) that assemble into multiple subcomplexes and form large central channels for nucleocytoplasmic exchange. How this architecture facilitates messenger RNA export, NPC biogenesis and turnover remains poorly understood. Here we combine in situ structural biology and integrative modelling with correlative light and electron microscopy and molecular perturbation to structurally analyse NPCs in intact Saccharomyces cerevisiae cells within the context of nuclear envelope remodelling. We find an in situ conformation and configuration of the Nup subcomplexes that was unexpected from the results of previous in vitro analyses. The configuration of the Nup159 complex appears critical to spatially accommodate its function as an mRNA export platform, and as a mediator of NPC turnover. The omega-shaped nuclear envelope herniae that accumulate in nup116Δ cells conceal partially assembled NPCs lacking multiple subcomplexes, including the Nup159 complex. Under conditions of starvation, herniae of a second type are formed that cytoplasmically expose NPCs. These results point to a model of NPC turnover in which NPC-containing vesicles bud off from the nuclear envelope before degradation by the autophagy machinery. Our study emphasizes the importance of investigating the structure-function relationship of macromolecular complexes in their cellular context.

摘要

核孔复合体(NPC)融合了核膜的内、外膜。它们由数百种核孔蛋白(Nups)组成,这些 Nups 组装成多个亚复合物,并形成用于核质交换的大型中央通道。这种结构如何促进信使 RNA 输出、NPC 的生物发生和周转仍然知之甚少。在这里,我们将原位结构生物学和整合建模与相关的光和电子显微镜以及分子扰动结合起来,在核膜重塑的背景下对完整的酿酒酵母细胞中的 NPC 进行结构分析。我们发现了一种 NPC 亚复合物的原位构象和构型,这与之前体外分析的结果出人意料。Nup159 复合物的构型似乎对其作为 mRNA 输出平台的空间容纳及其作为 NPC 周转的中介的功能至关重要。在 nup116Δ 细胞中积累的 omega 形核膜皱襞部分掩盖了缺少多个亚复合物的 NPC,包括 Nup159 复合物。在饥饿条件下,形成了第二种类型的皱襞,细胞质暴露 NPC。这些结果表明 NPC 周转的模型,其中包含 NPC 的小泡在被自噬机制降解之前从核膜上出芽。我们的研究强调了在细胞环境中研究大分子复合物的结构-功能关系的重要性。

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