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冈田酸诱导蛋白质转运在糙面内质网中选择性停滞,并阻止其输出到被COPII包被的结构中。

Okadaic acid induces selective arrest of protein transport in the rough endoplasmic reticulum and prevents export into COPII-coated structures.

作者信息

Pryde J G, Farmaki T, Lucocq J M

机构信息

Department of Medicine (RIE), The University of Edinburgh Medical School, Scotland, United Kingdom.

出版信息

Mol Cell Biol. 1998 Feb;18(2):1125-35. doi: 10.1128/MCB.18.2.1125.

Abstract

Quantitative immunoelectron microscopy and subcellular fractionation established the site of endoplasmic reticulum (ER)-Golgi transport arrest induced by the phosphatase inhibitor okadaic acid (OA). OA induced the disappearance of transitional element tubules and accumulation of the anterograde-transported Chandipura (CHP) virus G protein only in the rough ER (RER) and not at more distal sites. The block was specific to the early part of the anterograde pathway, because CHP virus G protein that accumulated in the intermediate compartment (IC) at 15 degrees C could gain access to Golgi stack enzymes. OA also induced RER accumulation of the IC protein p53/p58 via an IC-RER recycling pathway which was resistant to OA and inhibited by the G protein activator aluminium fluoride. The role of COPII coats in OA transport block was investigated by using immunofluorescence and cell fractionation. In untreated cells the COPII coat protein sec 13p colocalized with p53/p58 in Golgi-IC structures of the juxtanuclear region and peripheral cytoplasm. During OA treatment, p53/p58 accumulated in the RER but was excluded from sec 13p-containing membrane structures. Taken together our data indicate that OA induces an early defect in RER export which acts to prevent entry into COPII-coated structures of the IC region.

摘要

定量免疫电子显微镜和亚细胞分级分离确定了磷酸酶抑制剂冈田酸(OA)诱导的内质网(ER)-高尔基体转运停滞位点。OA仅在粗面内质网(RER)中诱导过渡元件小管消失和顺向转运的钱迪普拉(CHP)病毒G蛋白积累,而在更远端的位点则不诱导。这种阻滞特异于顺向途径的早期部分,因为在15℃时在中间区室(IC)中积累的CHP病毒G蛋白能够接触高尔基体堆叠酶。OA还通过一条对OA有抗性且被G蛋白激活剂氟化铝抑制的IC-RER循环途径诱导IC蛋白p53/p58在RER中积累。通过免疫荧光和细胞分级分离研究了COPII包被在OA转运阻滞中的作用。在未处理的细胞中,COPII包被蛋白sec 13p与p53/p58在近核区和外周细胞质的高尔基体-IC结构中共定位。在OA处理期间,p53/p58在RER中积累,但被排除在含有sec 13p的膜结构之外。综合我们的数据表明,OA诱导RER输出的早期缺陷,这一缺陷起到阻止进入IC区的COPII包被结构的作用。

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