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蛋白质在酵母粗面内质网中的保留:人核糖体结合糖蛋白I的表达与组装

Protein retention in yeast rough endoplasmic reticulum: expression and assembly of human ribophorin I.

作者信息

Sanderson C M, Crowe J S, Meyer D I

机构信息

Department of Biological Chemistry, School of Medicine, University of California, Los Angeles 90024.

出版信息

J Cell Biol. 1990 Dec;111(6 Pt 2):2861-70. doi: 10.1083/jcb.111.6.2861.

Abstract

The RER retains a specific subset of ER proteins, many of which have been shown to participate in the translocation of nascent secretory and membrane proteins. The mechanism of retention of RER specific membrane proteins is unknown. To study this phenomenon in yeast, where no RER-specific membrane proteins have yet been identified, we expressed the human RER-specific protein, ribophorin I. In all mammalian cell types examined, ribophorin I has been shown to be restricted to the membrane of the RER. Here we ascertain that yeast cells correctly target, assemble, and retain ribophorin I in their RER. Floatation experiments demonstrated that human ribophorin I, expressed in yeast, was membrane associated. Carbonate (pH = 11) washing and Triton X-114 cloud-point precipitations of yeast microsomes indicated that ribophorin I was integrated into the membrane bilayer. Both chromatography on Con A and digestion with endoglycosidase H were used to prove that ribophorin I was glycosylated once, consistent with its expression in mammalian cells. Proteolysis of microsomal membranes and subsequent immunoblotting showed ribophorin I to have assumed the correct transmembrane topology. Sucrose gradient centrifugation studies found ribophorin I to be included only in fractions containing rough membranes and excluded from smooth ones that, on the basis of the distribution of BiP, included smooth ER. Ribosome removal from rough membranes and subsequent isopycnic centrifugation resulted in a shift in the buoyant density of the ribophorin I-containing membranes. Furthermore, the rough and density-shifted fractions were the exclusive location of protein translocation activity. Based on these studies we conclude that sequestration of membrane proteins to rough domains of ER probably occurs in a like manner in yeast and mammalian cells.

摘要

内质网保留了特定的内质网蛋白亚群,其中许多已被证明参与新生分泌蛋白和膜蛋白的转运。内质网特异性膜蛋白的保留机制尚不清楚。为了在尚未鉴定出内质网特异性膜蛋白的酵母中研究这一现象,我们表达了人类内质网特异性蛋白核糖体结合蛋白I。在所有检测的哺乳动物细胞类型中,核糖体结合蛋白I都被证明局限于内质网的膜上。在这里,我们确定酵母细胞能够正确地将核糖体结合蛋白I靶向、组装并保留在内质网中。漂浮实验表明,在酵母中表达的人类核糖体结合蛋白I与膜相关。酵母微粒体的碳酸盐(pH = 11)洗涤和Triton X-114浊点沉淀表明核糖体结合蛋白I整合到膜双层中。伴刀豆球蛋白A层析和内切糖苷酶H消化均用于证明核糖体结合蛋白I只进行了一次糖基化,这与它在哺乳动物细胞中的表达一致。微粒体膜的蛋白酶解及随后的免疫印迹显示核糖体结合蛋白I具有正确的跨膜拓扑结构。蔗糖梯度离心研究发现核糖体结合蛋白I仅存在于含有糙面内质网的组分中,而不包含基于BiP分布的光面内质网的组分。从糙面内质网中去除核糖体并随后进行等密度离心导致含有核糖体结合蛋白I的膜的浮力密度发生变化。此外,糙面内质网和密度改变的组分是蛋白质转运活性的唯一位置。基于这些研究,我们得出结论,内质网膜蛋白在糙面内质网区域的隔离在酵母和哺乳动物细胞中可能以类似的方式发生。

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