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通过单个货物追踪来表征核孔复合体的选择性机制。

Selectivity mechanism of the nuclear pore complex characterized by single cargo tracking.

机构信息

Department of Physics, University of California, Berkeley, California 94720, USA.

出版信息

Nature. 2010 Sep 30;467(7315):600-3. doi: 10.1038/nature09285. Epub 2010 Sep 1.

Abstract

The nuclear pore complex (NPC) mediates all exchange between the cytoplasm and the nucleus. Small molecules can passively diffuse through the NPC, whereas larger cargos require transport receptors to translocate. How the NPC facilitates the translocation of transport receptor/cargo complexes remains unclear. To investigate this process, we tracked single protein-functionalized quantum dot cargos as they moved through human NPCs. Here we show that import proceeds by successive substeps comprising cargo capture, filtering and translocation, and release into the nucleus. Most quantum dots are rejected at one of these steps and return to the cytoplasm, including very large cargos that abort at a size-selective barrier. Cargo movement in the central channel is subdiffusive and cargos that can bind more transport receptors diffuse more freely. Without Ran GTPase, a critical regulator of transport directionality, cargos still explore the entire NPC, but have a markedly reduced probability of exit into the nucleus, suggesting that NPC entry and exit steps are not equivalent and that the pore is functionally asymmetric to importing cargos. The overall selectivity of the NPC seems to arise from the cumulative action of multiple reversible substeps and a final irreversible exit step.

摘要

核孔复合体(NPC)介导细胞质和细胞核之间的所有物质交换。小分子可以被动地通过 NPC 扩散,而较大的货物则需要转运受体进行转运。NPC 如何促进转运受体/货物复合物的转运仍然不清楚。为了研究这个过程,我们跟踪了单个蛋白功能化量子点货物,观察它们如何穿过人 NPC。在这里,我们表明,进口是通过连续的亚步骤进行的,包括货物捕获、过滤和转运,以及释放到细胞核内。大多数量子点在这些步骤中的一个步骤被拒绝并返回细胞质,包括在大小选择屏障处中止的非常大的货物。货物在中央通道中的运动是亚扩散的,并且可以结合更多转运受体的货物扩散更自由。没有 Ran GTPase,这是转运方向性的关键调节剂,货物仍然可以探索整个 NPC,但进入细胞核的概率明显降低,这表明 NPC 的进入和退出步骤不等效,并且孔是功能上不对称的,有利于货物的进入。NPC 的整体选择性似乎源于多个可逆亚步骤的累积作用和最后不可逆的出口步骤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e6c/2948059/93124df8c503/nihms213887f1.jpg

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