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探索细胞通道:揭开活细胞核孔中无序蛋白质的秘密。

Exploring Cellular Gateways: Unraveling the Secrets of Disordered Proteins within Live Nuclear Pores.

作者信息

Yu Wenlan, Tingey Mark, Kelich Joseph M, Li Yichen, Yu Jingjie, Junod Samuel L, Jiang Zecheng, Hansen Ian, Good Nacef, Yang Weidong

机构信息

Department of Biology, Temple University, Philadelphia, Pennsylvania, USA.

出版信息

Res Sq. 2024 Jan 9:rs.3.rs-3504130. doi: 10.21203/rs.3.rs-3504130/v1.

Abstract

Understanding the spatial organization of nucleoporins (Nups) with intrinsically disordered domains within the nuclear pore complex (NPC) is crucial for deciphering eukaryotic nucleocytoplasmic transport. Leveraging high-speed 2D single-molecule tracking and virtual 3D super-resolution microscopy in live HeLa cells, we investigated the spatial distribution of all eleven phenylalanine-glycine (FG)-rich Nups within individual NPCs. Our study reveals a nuanced landscape of FG-Nup conformations and arrangements. Five FG-Nups are steadfastly anchored at the NPC scaffold, collectively shaping a central doughnut-shaped channel, while six others exhibit heightened flexibility, extending towards the cytoplasmic and nucleoplasmic regions. Intriguingly, Nup214 and Nup153 contribute to cap-like structures that dynamically alternate between open and closed states along the nucleocytoplasmic transport axis, impacting the cytoplasmic and nuclear sides, respectively. Furthermore, Nup98, concentrated at the scaffold region, extends throughout the entire NPC while overlapping with other FG-Nups. Together, these eleven FG-Nups compose a versatile, capped trichoid channel spanning approximately 270 nm across the nuclear envelope. This adaptable trichoid channel facilitates a spectrum of pathways for passive diffusion and facilitated nucleocytoplasmic transport. Our comprehensive mapping of FG-Nup organization within live NPCs offers a unifying mechanism accommodating multiple transport pathways, thereby advancing our understanding of cellular transport processes.

摘要

了解核孔复合体(NPC)中具有内在无序结构域的核孔蛋白(Nups)的空间组织对于解读真核生物的核质运输至关重要。利用高速二维单分子追踪和实时HeLa细胞中的虚拟三维超分辨率显微镜,我们研究了单个NPC中所有11种富含苯丙氨酸-甘氨酸(FG)的Nups的空间分布。我们的研究揭示了FG-Nup构象和排列的细微差别。五种FG-Nups牢固地锚定在NPC支架上,共同形成一个中央甜甜圈形通道,而其他六种则表现出更高的灵活性,向细胞质和核质区域延伸。有趣的是,Nup214和Nup153形成帽状结构,沿着核质运输轴在开放和关闭状态之间动态交替,分别影响细胞质和核侧。此外,集中在支架区域的Nup98贯穿整个NPC,同时与其他FG-Nups重叠。这11种FG-Nups共同构成了一个多功能的、有帽的毛状通道,横跨核膜约270纳米。这个适应性强的毛状通道促进了一系列被动扩散和易化核质运输的途径。我们对活细胞NPC中FG-Nup组织的全面映射提供了一种统一机制,可容纳多种运输途径,从而增进了我们对细胞运输过程的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0e92/10802689/44ad68c63a69/nihpp-rs3504130v1-f0001.jpg

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