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2
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三维冷冻电子显微镜揭示非洲爪蟾核孔复合体的结构

Architecture of the Xenopus nuclear pore complex revealed by three-dimensional cryo-electron microscopy.

作者信息

Akey C W, Radermacher M

机构信息

Department of Biophysics, Boston University School of Medicine, Massachusetts 02118-2394.

出版信息

J Cell Biol. 1993 Jul;122(1):1-19. doi: 10.1083/jcb.122.1.1.

DOI:10.1083/jcb.122.1.1
PMID:8314837
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2119598/
Abstract

The nuclear pore complex spans the nuclear envelope and functions as a macromolecular transporter in the ATP-dependent process of nucleocytoplasmic transport. In this report, we present three dimensional (3D) structures for both membrane-associated and detergent-extracted Xenopus NPCs, imaged in frozen buffers by cryo-electron microscopy. A comparison of the differing configurations present in the 3D maps suggests that the spokes may possess an intrinsic conformational flexibility. When combined with recent data from a 3D map of negatively stained NPCs (Hinshaw, J. E., B. O. Carragher, and R. A. Milligan. 1992. Cell. 69:1133-1141), these observations suggest a minimal domain model for the spoke-ring complex which may account for the observed plasticity of this assembly. Moreover, lumenal domains in adjacent spokes are interconnected by radial arm dimers, forming a lumenal ring that may be responsible for anchoring the NPC within the nuclear envelope pore. Importantly, the NPC transporter is visualized as a centrally tapered cylinder that spans the entire width of the NPC, in a direction normal to the nuclear envelope. The central positioning, tripartite structure, and hollow nature of the transporter suggests that it may form a macromolecular transport channel, with a globular gating domain at each end. Finally, the packing of the transporter within the spokes creates a set of eight internal channels that may be responsible, in part, for the diffusion of ions and small molecules across the nuclear envelope.

摘要

核孔复合体横跨核膜,在依赖ATP的核质运输过程中作为大分子转运体发挥作用。在本报告中,我们展示了与膜相关的和用去污剂提取的非洲爪蟾核孔复合体的三维(3D)结构,这些结构是通过冷冻电镜在冷冻缓冲液中成像的。对3D图谱中不同构型的比较表明,辐条可能具有内在的构象灵活性。当与最近关于负染核孔复合体的3D图谱数据(欣肖,J.E.,B.O.卡拉格,和R.A.米利根。1992年。《细胞》。69:1133 - 1141)相结合时,这些观察结果提示了辐条 - 环复合体的最小结构域模型,这可能解释了该组件所观察到的可塑性。此外,相邻辐条中的腔结构域通过径向臂二聚体相互连接,形成一个腔环,该腔环可能负责将核孔复合体锚定在核膜孔内。重要的是,核孔复合体转运体呈现为一个中心逐渐变细的圆柱体,它在垂直于核膜的方向上跨越核孔复合体的整个宽度。转运体的中心定位、三方结构和中空性质表明它可能形成一个大分子运输通道,两端各有一个球状门控结构域。最后,转运体在辐条内的堆积形成了一组八个内部通道,这些通道可能部分负责离子和小分子在核膜上的扩散。