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内质网的钙离子信号传导与钙结合伴侣蛋白

Ca2+ signaling and calcium binding chaperones of the endoplasmic reticulum.

作者信息

Michalak M, Robert Parker J M, Opas M

机构信息

Department of Biochemistry, Canadian Institutes of Health Research Membrane Protein Research Group, University of Alberta, Alta., T6G 2H7, Edmonton, Canada.

出版信息

Cell Calcium. 2002 Nov-Dec;32(5-6):269-78. doi: 10.1016/s0143416002001884.

Abstract

The endoplasmic reticulum is a centrally located organelle which affects virtually every cellular function. Its unique luminal environment consists of Ca(2+) binding chaperones, which are involved in protein folding, post-translational modification, Ca(2+) storage and release, and lipid synthesis and metabolism. The environment within the lumen of the endoplasmic reticulum has profound effects on endoplasmic reticulum function and signaling, including apoptosis, stress responses, organogenesis, and transcriptional activity. Calreticulin, a major Ca(2+) binding (storage) chaperone in the endoplasmic reticulum, is a key component of the calreticulin/calnexin cycle which is responsible for the folding of newly synthesized proteins and glycoproteins and for quality control pathways in the endoplasmic reticulum. The function of calreticulin, calnexin and other endoplasmic reticulum proteins is affected by continuous fluctuations in the concentration of Ca(2+) in the endoplasmic reticulum. Thus, changes in Ca(2+) concentration may play a signaling role in the lumen of the endoplasmic reticulum as well as in the cytosol. Recent studies on calreticulin-deficient and transgenic mice have revealed that calreticulin and the endoplasmic reticulum may be upstream regulators in the Ca(2+)-dependent pathways that control cellular differentiation and/or organ development.

摘要

内质网是一种位于细胞中央的细胞器,几乎影响着细胞的每一项功能。其独特的腔内环境含有钙结合伴侣蛋白,这些蛋白参与蛋白质折叠、翻译后修饰、钙储存与释放以及脂质合成与代谢。内质网腔内的环境对内质网的功能和信号传导有着深远影响,包括细胞凋亡、应激反应、器官发生和转录活性。钙网蛋白是内质网中主要的钙结合(储存)伴侣蛋白,是钙网蛋白/钙连蛋白循环的关键组成部分,该循环负责新合成蛋白质和糖蛋白的折叠以及内质网中的质量控制途径。内质网中钙浓度的持续波动会影响钙网蛋白、钙连蛋白和其他内质网蛋白的功能。因此,钙浓度的变化可能在内质网腔以及细胞质中发挥信号传导作用。最近对钙网蛋白缺陷型和转基因小鼠的研究表明,钙网蛋白和内质网可能是控制细胞分化和/或器官发育的钙依赖性途径中的上游调节因子。

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