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Cell viability and secretion of active proteins in Schizosaccharomyces pombe do not require the chaperone function of calnexin

机译:粟酒裂殖酵母中的细胞活力和活性蛋白的分泌不需要钙调蛋白的伴侣功能

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Folding of newly synthesized proteins within the ER (endoplasmic reticulum) is a rate-limiting step in protein secretion. Thus ER molecular chaperones and foldases have a major impact in determining the rate and yield of these crucial cellular processes. Calnexin is a key ER chaperone implicated in the folding, retention and targeting for degradation of proteins that go through the secretory pathway. Calnexin molecules contain a highly conserved central domain (hcd) that has been proposed to be involved in the interaction with folding substrates and other chaperones. To gain a better understanding of the roles played by calnexin in the secretory pathway, we examined the efficiency of fission yeast (Schizosaccharomyces pombe) strains expressing calnexin mutants to secrete different model proteins. Remarkably, calnexin hcd-deletion mutants, although devoid of detectable chaperone activity in vitro, confer viability and cause a considerable increase in the secretion of heterologous cellulase. Surprisingly the quality-control efficiency, measured as the activity/amount ratio of secreted model protein, was not severely reduced in these calnexin hcd-deletion mutant strains. Our results indicate that the essential function of calnexin does not reside in its role in the folding or in the retention of misfolded proteins. These observations suggest the existence of a highly stringent quality control mechanism in the ER of S. pombe that might reduce the secretion efficiency of endogenous proteins.
机译:在ER(内质网)内折叠新合成的蛋白质是蛋白质分泌中的限速步骤。因此,ER分子伴侣和折叠酶对确定这些关键细胞过程的速率和产量具有重大影响。钙结合蛋白是关键的ER伴侣,其参与通过分泌途径的蛋白质的折叠,保留和靶向降解。 Calnexin分子包含一个高度保守的中央结构域(hcd),该结构域已被提议参与与折叠底物和其他分子伴侣的相互作用。为了更好地了解钙调蛋白在分泌途径中的作用,我们研究了表达钙调蛋白突变体的裂殖酵母(Schizosaccharomyces pombe)菌株表达分泌不同模型蛋白的效率。值得注意的是,钙调蛋白hcd-缺失突变体尽管缺乏体外可检测的伴侣活性,但赋予了活力并引起异源纤维素酶分泌的显着增加。令人惊讶的是,在这些钙粘蛋白hcd-缺失突变菌株中,以分泌的模型蛋白的活性/量比衡量的质量控制效率并未显着降低。我们的结果表明,钙调蛋白的基本功能并不在于其在折叠或错折叠蛋白保留中的作用。这些观察结果表明,在粟酒裂殖酵母的内质网中存在高度严格的质量控制机制,这可能会降低内源蛋白质的分泌效率。

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