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P180核糖体受体的可变剪接形式在诱导粗面内质网增殖的能力上存在差异。

Alternatively spliced forms of the P180 ribosome receptor differ in their ability to induce the proliferation of rough endoplasmic reticulum.

作者信息

Bai Ji-Zhong, Leung Euphemia, Holloway Hilary, Krissansen Geoffrey W

机构信息

Department of Molecular Medicine & Pathology, School of Medical Sciences, Faculty of Medical and Health Sciences, University of Auckland, Auckland, New Zealand.

出版信息

Cell Biol Int. 2008 May;32(5):473-83. doi: 10.1016/j.cellbi.2007.10.002. Epub 2007 Nov 5.

Abstract

Expression of the canine 180-kDa ribosome receptor p180 in yeast induces the synthesis of RER, and increases the mRNAs of secretory pathway proteins, and protein secretion. To assess whether p180 is a master regulator of cell secretion in mammalian cells, we stably expressed red fluorescent forms of the human p180 variants p180DeltaR (no tandem repeats), p180R (26 repeats), and full-length p180FR (54 repeats) containing different lengths of the tandem repeat ribosome-binding domain in rat pancreatic RINm5F islet beta-cells. All three fluorescent p180 variants localized exclusively to the RER. Cells transfected with p180R were filled with ribosome-studded karmellae, whereas p180DeltaR and p180FR transfectants contained only increased amounts of mostly smooth ER. Unlike in yeast, over-expression of p180R failed to increase the secretory pathway proteins calnexin, SEC61beta, and calreticulin, or ribosome biogenesis. The data suggest that alternative splicing of the p180 tandem repeat domain is a means of regulating the ribosome-binding activity of p180, and potentially the secretory activity of the cell. However, p180 is not a master regulator of mammalian cell secretion as it does not concomitantly trigger the synthesis of protein machinery required to enhance protein synthesis and cell secretion.

摘要

犬类180-kDa核糖体受体p180在酵母中的表达可诱导糙面内质网(RER)的合成,并增加分泌途径蛋白的mRNA以及蛋白质分泌。为评估p180是否为哺乳动物细胞中细胞分泌的主要调节因子,我们在大鼠胰腺RINm5F胰岛β细胞中稳定表达了包含不同长度串联重复核糖体结合结构域的人p180变体p180DeltaR(无串联重复)、p180R(26个重复)和全长p180FR(54个重复)的红色荧光形式。所有三种荧光p180变体均仅定位于糙面内质网。用p180R转染的细胞充满了布满核糖体的卡氏小体,而p180DeltaR和p180FR转染细胞仅含有数量增加的大多为光滑内质网。与酵母不同,p180R的过表达未能增加分泌途径蛋白钙连蛋白、SEC61β和钙网蛋白,也未增加核糖体生物合成。数据表明,p180串联重复结构域的可变剪接是调节p180核糖体结合活性以及潜在调节细胞分泌活性的一种方式。然而,p180并非哺乳动物细胞分泌的主要调节因子,因为它不会同时触发增强蛋白质合成和细胞分泌所需的蛋白质机制的合成。

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