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钙网蛋白通过调节纽蛋白的表达来调节细胞黏附性。

Calreticulin modulates cell adhesiveness via regulation of vinculin expression.

作者信息

Opas M, Szewczenko-Pawlikowski M, Jass G K, Mesaeli N, Michalak M

机构信息

Department of Anatomy and Cell Biology, University of Toronto, Ontario, Canada.

出版信息

J Cell Biol. 1996 Dec;135(6 Pt 2):1913-23. doi: 10.1083/jcb.135.6.1913.

Abstract

Calreticulin is an ubiquitous and highly conserved high capacity Ca(2+)-binding protein that plays a major role in Ca2+ storage within the lumen of the ER. Here, using L fibroblast cell lines expressing different levels of calreticulin, we show that calreticulin plays a role in the control of cell adhesiveness via regulation of expression of vinculin, a cytoskeletal protein essential for cell-substratum and cell-cell attachments. Both vinculin protein and mRNA levels are increased in cells overexpressing calreticulin and are downregulated in cells expressing reduced level of calreticulin. Abundance of actin, talin, alpha 5 and beta 1 integrins, pp125 focal adhesion kinase, and alpha-catenin is not affected by the differential calreticulin expression. Overexpression of calreticulin increases both cell-substratum and cell-cell adhesiveness of L fibroblasts that, most surprisingly, establish vinculin-rich cell-cell junctions. Upregulation of calreticulin also affects adhesion-dependent phenomena such as cell motility (which decreases) and cell spreading (which increases). Downregulation of calreticulin brings about inverse effects. Cell adhesiveness is Ca2+ regulated. The level of calreticulin expression, however, has no effect on either the resting cytoplasmic Ca2+ concentration or the magnitude of FGF-induced Ca2+ transients. Calreticulin, however, participates in Ca2+ homeostasis as its level of expression affects cell viability at low concentrations of extracellular Ca2+. Consequently, we infer that it is not the Ca2+ storage function of calreticulin that affects cell adhesiveness. Neither endogenous calreticulin nor overexpressed green fluorescent protein-calreticulin construct can be detected outside of the ER. Since all of the adhesion-related effects of differential calreticulin expression can be explained by its regulation of vinculin expression, we conclude that it is the ER-resident calreticulin that affects cellular adhesiveness.

摘要

钙网蛋白是一种普遍存在且高度保守的高容量钙离子结合蛋白,在内质网腔的钙离子储存中起主要作用。在此,我们利用表达不同水平钙网蛋白的L成纤维细胞系表明,钙网蛋白通过调节纽蛋白(一种对细胞与基质及细胞与细胞附着至关重要的细胞骨架蛋白)的表达,在控制细胞黏附性方面发挥作用。在过表达钙网蛋白的细胞中,纽蛋白的蛋白质和mRNA水平均升高,而在钙网蛋白表达水平降低的细胞中则下调。肌动蛋白、踝蛋白、α5和β1整合素、pp125粘着斑激酶及α连环蛋白的丰度不受钙网蛋白差异表达的影响。钙网蛋白的过表达增加了L成纤维细胞与基质及细胞与细胞的黏附性,最令人惊讶的是,这些细胞形成了富含纽蛋白的细胞间连接。钙网蛋白的上调还会影响黏附依赖性现象,如细胞运动性(降低)和细胞铺展(增加)。钙网蛋白的下调则产生相反的效果。细胞黏附性受钙离子调节。然而,钙网蛋白的表达水平对静息细胞质钙离子浓度或成纤维细胞生长因子诱导的钙离子瞬变幅度均无影响。不过,钙网蛋白参与钙离子稳态,因为其表达水平在低细胞外钙离子浓度下影响细胞活力。因此,我们推断并非钙网蛋白的钙离子储存功能影响细胞黏附性。在内质网之外,既检测不到内源性钙网蛋白,也检测不到过表达的绿色荧光蛋白-钙网蛋白构建体。由于钙网蛋白差异表达的所有与黏附相关的效应都可以通过其对纽蛋白表达的调节来解释,我们得出结论,是内质网驻留的钙网蛋白影响细胞黏附性。

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