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网格蛋白轻链缺失对网格蛋白功能及膜结合的影响

Compromise of clathrin function and membrane association by clathrin light chain deletion.

作者信息

Wang Jingshan, Virta Valerie C, Riddelle-Spencer Kathryn, O'Halloran Theresa J

机构信息

Section of Molecular Cell & Developmental Biology, Institute for Cellular and Molecular Biology, University of Texas at Austin, Austin, TX 78712, USA.

出版信息

Traffic. 2003 Dec;4(12):891-901. doi: 10.1046/j.1600-0854.2003.00144.x.

Abstract

While clathrin heavy chains from different species are highly conserved in amino acid sequence, clathrin light chains are much more divergent. Thus clathrin light chain may have different functions in different organisms. To investigate clathrin light chain function, we cloned the clathrin light chain, clcA, from Dictyostelium and examined clathrin function in clcA-mutants. Phenotypic deficiencies in development, cytokinesis, and osmoregulation showed that light chain was critical for clathrin function in Dictyostelium. In contrast with budding yeast, we found the light chain did not influence steady-state levels of clathrin, triskelion formation, or contribute to clathrin over-assembly on intracellular membranes. Imaging GFP-CHC in clcA- mutants showed that the heavy chain formed dynamic punctate structures that were remarkably similar to those found in wild-type cells. However, clathrin light chain knockouts showed a decreased association of clathrin with intracellular membranes. Unlike wild-type cells, half of the clathrin in clcA- mutants was cytosolic, suggesting that the absence of light chain compromised the assembly of triskelions onto intracellular membranes. Taken together, these results suggest a role for the Dictyostelium clathrin light chain in regulating the self-assembly of triskelions onto intracellular membranes, and demonstrate a crucial contribution of the light chain to clathrin function in vivo.

摘要

虽然来自不同物种的网格蛋白重链在氨基酸序列上高度保守,但网格蛋白轻链的差异要大得多。因此,网格蛋白轻链在不同生物体中可能具有不同的功能。为了研究网格蛋白轻链的功能,我们从盘基网柄菌中克隆了网格蛋白轻链clcA,并在clcA突变体中检测了网格蛋白的功能。发育、胞质分裂和渗透调节方面的表型缺陷表明,轻链对盘基网柄菌中网格蛋白的功能至关重要。与芽殖酵母不同,我们发现轻链不影响网格蛋白的稳态水平、三脚蛋白复合体的形成,也不促进网格蛋白在细胞内膜上的过度组装。对clcA突变体中的绿色荧光蛋白标记的重链(GFP-CHC)进行成像显示,重链形成了动态的点状结构,与野生型细胞中的结构非常相似。然而,网格蛋白轻链基因敲除显示网格蛋白与细胞内膜的结合减少。与野生型细胞不同,clcA突变体中一半的网格蛋白位于胞质中,这表明轻链的缺失损害了三脚蛋白复合体在细胞内膜上的组装。综上所述,这些结果表明盘基网柄菌的网格蛋白轻链在调节三脚蛋白复合体在细胞内膜上的自组装中发挥作用,并证明了轻链在体内对网格蛋白功能的关键贡献。

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