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扩散屏障维持极化神经元中膜蛋白的分布。

A diffusion barrier maintains distribution of membrane proteins in polarized neurons.

作者信息

Winckler B, Forscher P, Mellman I

机构信息

Department of Cell Biology, Yale University School of Medicine, New Haven, Connecticut 06520-8002, USA.

出版信息

Nature. 1999 Feb 25;397(6721):698-701. doi: 10.1038/17806.

Abstract

The asymmetric distribution of proteins to distinct domains in the plasma membrane is crucial to the function of many polarized cells. In epithelia, distinct apical and basolateral surfaces are maintained by tight junctions that prevent diffusion of proteins and lipids between the two domains. Polarized neurons maintain axonal and somatodendritic plasma membrane domains without an obvious physical barrier. Indeed, the artificial lipid Dil encounters no diffusion barrier at the presumptive domain boundary, the axon hillock. By measuring the lateral mobility of membrane proteins using optical tweezers, we show here that some membrane proteins exhibit markedly reduced mobility in the initial segment of the axon. Disruption of F-actin and low levels of dimethyl sulphoxide (DMSO) abolish this diffusion barrier and lead to redistribution of membrane markers that had previously been polarized. Immobilization in the initial segment may reflect, at least in part, differential tethering to cytoskeletal components. Therefore, the ability to maintain a polarized distribution of membrane proteins depends on a specialized domain at the initial segment of the axon, which restricts lateral mobility and serves as a new type of diffusion barrier that acts in the absence of cell-cell contact.

摘要

蛋白质在质膜中向不同结构域的不对称分布对于许多极化细胞的功能至关重要。在上皮细胞中,紧密连接维持着明显的顶端和基底外侧表面,防止蛋白质和脂质在这两个结构域之间扩散。极化神经元维持轴突和树突体细胞膜结构域,却没有明显的物理屏障。实际上,人工脂质Dil在假定的结构域边界——轴丘处没有遇到扩散屏障。通过使用光镊测量膜蛋白的横向流动性,我们在此表明,一些膜蛋白在轴突的起始段表现出明显降低的流动性。F-肌动蛋白的破坏和低水平的二甲基亚砜(DMSO)消除了这种扩散屏障,并导致先前极化的膜标记物重新分布。在起始段的固定至少部分可能反映了与细胞骨架成分的差异拴系。因此,维持膜蛋白极化分布的能力取决于轴突起始段的一个特殊结构域,该结构域限制横向流动性,并作为一种新型的扩散屏障,在没有细胞间接触的情况下发挥作用。

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