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哺乳动物的Sec16/p250在内质网的膜运输过程中发挥作用。

Mammalian Sec16/p250 plays a role in membrane traffic from the endoplasmic reticulum.

作者信息

Iinuma Takayuki, Shiga Akiko, Nakamoto Koji, O'Brien Matthew B, Aridor Meir, Arimitsu Nagisa, Tagaya Mitsuo, Tani Katsuko

机构信息

School of Life Sciences, Tokyo University of Pharmacy and Life Sciences, Hachioji, Tokyo 192-0392, Japan.

出版信息

J Biol Chem. 2007 Jun 15;282(24):17632-9. doi: 10.1074/jbc.M611237200. Epub 2007 Apr 11.

DOI:10.1074/jbc.M611237200
PMID:17428803
Abstract

Coat protein complex II (COPII)-coated vesicles/carriers, which mediate export of proteins from the endoplasmic reticulum (ER), are formed at special ER subdomains in mammals, termed ER exit sites or transitional ER. The COPII coat consists of a small GTPase, Sar1, and two protein complexes, Sec23-Sec24 and Sec13-Sec31. Sec23-Sec24 and Sec13-Sec31 appear to constitute the inner and the outermost layers of the COPII coat, respectively. We previously isolated two mammalian proteins (p125 and p250) that bind to Sec23. p125 was found to be a mammalian-specific, phospholipase A(1)-like protein that participates in the organization of ER exit sites. Here we show that p250 is encoded by the KIAA0310 clone and has sequence similarity to yeast Sec16 protein. Although KIAA0310p was found to be localized at ER exit sites, subcellular fractionation revealed its predominant presence in the cytosol. Cytosolic KIAA0310p was recruited to ER membranes in a manner dependent on Sar1. Depletion of KIAA0310p mildly caused disorganization of ER exit sites and delayed protein transport from the ER, suggesting its implication in membrane traffic out of the ER. Overexpression of KIAA0310p affected ER exit sites in a manner different from that of p125. Binding experiments suggested that KIAA0310p interacts with both the inner and the outermost layer coat complexes, whereas p125 binds principally to the inner layer complex. Our results suggest that KIAA0310p, a mammalian homologue of yeast Sec16, builds up ER exit sites in cooperation with p125 and plays a role in membrane traffic from the ER.

摘要

II型被膜小泡蛋白复合体(COPII)包被的小泡/载体介导蛋白质从内质网(ER)输出,在哺乳动物的特殊内质网亚结构域形成,称为内质网出口位点或过渡内质网。COPII包被由一个小GTP酶Sar1和两个蛋白质复合体Sec23-Sec24以及Sec13-Sec31组成。Sec23-Sec24和Sec13-Sec31似乎分别构成COPII包被的内层和最外层。我们之前分离出两种与Sec23结合的哺乳动物蛋白(p125和p250)。发现p125是一种哺乳动物特异性的、类似磷脂酶A(1)的蛋白,参与内质网出口位点的组织。在此我们表明p250由KIAA0310克隆编码,与酵母Sec16蛋白具有序列相似性。尽管发现KIAA0310p定位于内质网出口位点,但亚细胞分级分离显示其主要存在于胞质溶胶中。胞质溶胶中的KIAA0310p以依赖Sar1的方式被募集到内质网膜上。KIAA0310p的缺失轻度导致内质网出口位点的紊乱,并延迟蛋白质从内质网的转运,表明其在内质网的膜运输中起作用。KIAA0310p的过表达以不同于p125的方式影响内质网出口位点。结合实验表明,KIAA0310p与内层和最外层包被复合体都相互作用,而p125主要与内层复合体结合。我们的结果表明,KIAA0310p作为酵母Sec16的哺乳动物同源物,与p125协同构建内质网出口位点,并在内质网的膜运输中发挥作用。

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