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COPII与内质网的选择性输出

COPII and selective export from the endoplasmic reticulum.

作者信息

Barlowe C

机构信息

Department of Biochemistry, Dartmouth Medical School, Hanover, NH 03755, USA.

出版信息

Biochim Biophys Acta. 1998 Aug 14;1404(1-2):67-76. doi: 10.1016/s0167-4889(98)00047-0.

DOI:10.1016/s0167-4889(98)00047-0
PMID:9714742
Abstract

Forward transport of proteins from the endoplasmic reticulum (ER) to the Golgi complex depends on COPII, a membrane coat that forms ER-derived vesicles. Based on experimental observations, a series of integrated events must be accomplished during the formation of COPII coated vesicles. First, the subunits of the COPII coat must be recruited to the correct site on the surface of the ER. Second, soluble and integral membrane cargo proteins destined for the Golgi complex are concentrated into nascent buds. Third, a set of molecules that must cycle between the ER and Golgi compartments (such as SNARE proteins) are incorporated into vesicles. And fourth, the COPII coat is disassembled after release of ER-derived vesicles thus allowing vesicle fusion and recycling of COPII components. Incorporation of soluble cargo infers the existence of membrane spanning receptor molecules that link lumenal cargo to the vesicle coat. Some candidate proteins have been identified (including the p24 family) that appear to participate in the selection of soluble cargo; however, the mechanistic details of this selection procedure remain obscure. This review will focus on the molecular constituents of the COPII coat and emerging interactions of the coat subunits with proteins involved in selective export from the ER.

摘要

蛋白质从内质网(ER)向高尔基体复合体的正向转运依赖于COPII,这是一种形成源自内质网的囊泡的膜被。基于实验观察,在COPII被膜小泡形成过程中必须完成一系列整合事件。首先,COPII被膜的亚基必须被招募到内质网表面的正确位点。其次,运往高尔基体复合体的可溶性和整合膜货物蛋白被浓缩到新生的芽中。第三,一组必须在内质网和高尔基体区室之间循环的分子(如SNARE蛋白)被整合到囊泡中。第四,源自内质网的囊泡释放后,COPII被膜解体,从而允许囊泡融合和COPII组分的循环利用。可溶性货物的整合意味着存在跨膜受体分子,这些分子将腔内货物与囊泡被膜连接起来。已经鉴定出一些候选蛋白(包括p24家族),它们似乎参与了可溶性货物的选择;然而,这种选择过程的机制细节仍然不清楚。本综述将聚焦于COPII被膜的分子组成成分以及被膜亚基与参与从内质网选择性输出的蛋白质之间新出现的相互作用。

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