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凝集素缺陷型钙网蛋白作为I类组织相容性分子的伴侣分子保留了完整的功能。

Lectin-deficient calreticulin retains full functionality as a chaperone for class I histocompatibility molecules.

作者信息

Ireland Breanna S, Brockmeier Ulf, Howe Christopher M, Elliott Tim, Williams David B

机构信息

Department of Biochemistry, University of Toronto, Toronto, Ontario M5S 1A8, Canada.

出版信息

Mol Biol Cell. 2008 Jun;19(6):2413-23. doi: 10.1091/mbc.e07-10-1055. Epub 2008 Mar 12.

Abstract

Calreticulin is a molecular chaperone of the endoplasmic reticulum that uses both a lectin site specific for Glc(1)Man(5-9)GlcNAc(2) oligosaccharides and a polypeptide binding site to interact with nascent glycoproteins. The latter mode of substrate recognition is controversial. To examine the relevance of polypeptide binding to protein folding in living cells, we prepared lectin-deficient mutants of calreticulin and examined their abilities to support the assembly and quality control of mouse class I histocompatibility molecules. In cells lacking calreticulin, class I molecules exhibit inefficient loading of peptide ligands, reduced cell surface expression and aberrantly rapid export from the endoplasmic reticulum. Remarkably, expression of calreticulin mutants that are completely devoid of lectin function fully complemented all of the class I biosynthetic defects. We conclude that calreticulin can use nonlectin-based modes of substrate interaction to effect its chaperone and quality control functions on class I molecules in living cells. Furthermore, pulse-chase coimmunoisolation experiments revealed that lectin-deficient calreticulin bound to a similar spectrum of client proteins as wild-type calreticulin and dissociated with similar kinetics, suggesting that lectin-independent interactions are commonplace in cells and that they seem to be regulated during client protein maturation.

摘要

钙网蛋白是内质网的一种分子伴侣,它利用一个对Glc(1)Man(5 - 9)GlcNAc(2)寡糖具有特异性的凝集素位点和一个多肽结合位点与新生糖蛋白相互作用。后一种底物识别模式存在争议。为了研究多肽结合对活细胞中蛋白质折叠的相关性,我们制备了钙网蛋白的凝集素缺陷突变体,并检测它们支持小鼠I类组织相容性分子组装和质量控制的能力。在缺乏钙网蛋白的细胞中,I类分子表现出肽配体加载效率低下、细胞表面表达减少以及从内质网异常快速输出。值得注意的是,完全缺乏凝集素功能的钙网蛋白突变体的表达完全弥补了所有I类生物合成缺陷。我们得出结论,钙网蛋白可以利用基于非凝集素的底物相互作用模式,在活细胞中对I类分子发挥其伴侣和质量控制功能。此外,脉冲追踪共免疫分离实验表明,凝集素缺陷的钙网蛋白与野生型钙网蛋白结合的客户蛋白谱相似,且解离动力学相似,这表明不依赖凝集素的相互作用在细胞中很常见,并且它们似乎在客户蛋白成熟过程中受到调控。

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