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相关内吞蛋白Eps15和Eps15R之间的核质差异运输

Differential nucleocytoplasmic trafficking between the related endocytic proteins Eps15 and Eps15R.

作者信息

Poupon Viviane, Polo Simona, Vecchi Manuela, Martin Gwendal, Dautry-Varsat Alice, Cerf-Bensussan Nadine, Di Fiore Pier Paolo, Benmerah Alexandre

机构信息

INSERM E9925, Faculté Necker-Enfants Malades, 156 rue de Vaugirard, 75730 Paris Cedex 15, France.

出版信息

J Biol Chem. 2002 Mar 15;277(11):8941-8. doi: 10.1074/jbc.M108385200. Epub 2002 Jan 2.

Abstract

Eps15 and Eps15R are constitutive components of clathrin-coated pits that are required for clathrin-dependent endocytosis. The most striking difference between these two related proteins is that Eps15R is also found in the nucleus, whereas Eps15 is excluded from this compartment at steady state. To better understand the individual functions of these two proteins, the mechanisms responsible for their different localization were investigated. Interestingly, some mutants of Eps15 were found in the nucleus. This nuclear localization was correlated with the loss of the last approximately 100 amino acids of Eps15, suggesting the presence of a nuclear export signal (NES) within this region. As expected, the last 25 amino acids contain a leucine-rich sequence matching with classical NESs, show a leptomycin B-sensitive nuclear export activity, and bind to the exportin CRM1 in a leucine residue-dependent manner. In contrast, no NES could be found in Eps15R, a result in keeping with its constitutive nuclear localization that appears to be regulated by alternative splicing. Altogether, these results are the first characterization of nucleocytoplasmic shuttling signals for endocytic proteins. They also provide an explanation for the different nuclear localization of Eps15 and Eps15R and further evidence for a possible nuclear function for Eps15 protein family members.

摘要

Eps15和Eps15R是网格蛋白包被小窝的组成成分,是网格蛋白依赖性内吞作用所必需的。这两种相关蛋白最显著的差异在于,Eps15R也存在于细胞核中,而在稳态时Eps15被排除在该区域之外。为了更好地理解这两种蛋白的各自功能,对导致它们不同定位的机制进行了研究。有趣的是,发现Eps15的一些突变体存在于细胞核中。这种核定位与Eps15最后约100个氨基酸的缺失相关,提示该区域存在核输出信号(NES)。正如预期的那样,最后25个氨基酸包含与经典NES匹配的富含亮氨酸的序列,表现出对雷帕霉素B敏感的核输出活性,并以亮氨酸残基依赖的方式与输出蛋白CRM1结合。相反,在Eps15R中未发现NES,这一结果与其组成型核定位一致,其组成型核定位似乎受可变剪接调控。总之,这些结果首次对内吞蛋白的核质穿梭信号进行了表征。它们还为Eps15和Eps15R不同的核定位提供了解释,并为Eps15蛋白家族成员可能的核功能提供了进一步证据。

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