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核孔复合体被动渗透屏障的表征

Characterisation of the passive permeability barrier of nuclear pore complexes.

作者信息

Mohr Dagmar, Frey Steffen, Fischer Torsten, Güttler Thomas, Görlich Dirk

机构信息

ZMBH, Im Neuenheimer Feld 282, Heidelberg, Germany.

出版信息

EMBO J. 2009 Sep 2;28(17):2541-53. doi: 10.1038/emboj.2009.200. Epub 2009 Aug 13.

Abstract

Nuclear pore complexes (NPCs) restrict uncontrolled nucleocytoplasmic fluxes of inert macromolecules but permit facilitated translocation of nuclear transport receptors and their cargo complexes. We probed the passive barrier of NPCs and observed sieve-like properties with a dominating mesh or channel radius of 2.6 nm, which is narrower than proposed earlier. A small fraction of diffusion channels has a wider opening, explaining the very slow passage of larger molecules. The observed dominant passive diameter approximates the distance of adjacent hydrophobic clusters of FG repeats, supporting the model that the barrier is made of FG repeat domains cross-linked with a spacing of an FG repeat unit length. Wheat germ agglutinin and the dominant-negative importin beta(45-462) fragment were previously regarded as selective inhibitors of facilitated NPC passage. We now observed that they do not distinguish between the passive and the facilitated mode. Instead, their inhibitory effect correlates with the size of the NPC-passing molecule. They have little effect on small species, inhibit the passage of green fluorescent protein-sized objects >10-fold and virtually block the translocation of larger ones. This suggests that passive and facilitated NPC passage proceed through one and the same permeability barrier.

摘要

核孔复合体(NPC)限制惰性大分子不受控制的核质通量,但允许核转运受体及其货物复合体的易化转运。我们探究了NPC的被动屏障,并观察到其具有筛状特性,主要筛孔或通道半径为2.6纳米,比之前提出的更窄。一小部分扩散通道有更宽的开口,这解释了较大分子的通过非常缓慢的原因。观察到的主要被动直径接近FG重复序列相邻疏水簇之间的距离,支持了屏障由以FG重复单元长度为间距交联的FG重复结构域构成的模型。麦胚凝集素和显性负性输入蛋白β(45 - 462)片段以前被认为是NPC易化通道的选择性抑制剂。我们现在观察到它们无法区分被动模式和易化模式。相反,它们的抑制作用与通过NPC的分子大小相关。它们对小分子影响很小,抑制绿色荧光蛋白大小的物体通过的能力超过10倍,并且实际上阻止了更大物体的转运。这表明NPC的被动和易化通道通过同一个渗透屏障。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7990/2738697/5eb5b13ddd21/emboj2009200f1.jpg

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