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Elucidation of the molecular logic by which misfoldedα1-antitrypsin is preferentially selected for degradation

机译:阐明错误折叠的分子逻辑优先选择α1-抗胰蛋白酶进行降解

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摘要

The exocytic pathway provides a physical route through which newly synthesized secretory and membrane proteins are deployed to the eukaryote cell surface. For newly synthesized α1-antitrypsin (AAT), the modification of its asparagine-linked oligosaccharides by a slow-acting mannosidase partitions the misfolded monomer into the proteasomal degradation pathway. Herein, we asked whether, and how, modification by endoplasmic reticulum mannosidase I (ERManI) contributes to the preferential selection of the misfolded AAT monomer for proteasomal degradation. Transiently expressed mutant and WT AAT variants underwent rapid destabilization in response to an artificially elevated ERManI concentration in the murine hepatoma cell line, Hepa1a. Based on the mannosidase- and lactacystin-sensitive properties of intracellular turnover, a stochastic model is proposed in which the delayed onset of the glycan modification, relative to the duration of nonnative protein structure, coordinates the preferential degradation of the misfolded monomer and spares the native molecule from destruction. Newly synthesized endogenous transferrin underwent degradation in response to an elevated concentration of ERManI, whereas the nonglycosylated secretory glycoprotein albumin was not affected.Taken together, these findings indicate that efficient conformationalmaturation might function as the initial quality control standard for a broadpopulation of glycoproteins.
机译:胞外途径提供了一种物理途径,通过该途径,新合成的分泌蛋白和膜蛋白被部署到真核生物细胞表面。对于新合成的α1-抗胰蛋白酶(AAT),通过缓慢作用的甘露糖苷酶对其天冬酰胺连接的寡糖的修饰将错折叠的单体分配到蛋白酶体降解途径中。在此,我们询问内质网甘露糖苷酶I(ERManI)的修饰是否以及如何有助于优先选择错折叠的AAT单体进行蛋白酶体降解。瞬时表达的突变体和WT AAT变体经历快速失稳,以响应小鼠肝癌细胞系Hepa1a中人为升高的ERManI浓度。基于甘露糖苷酶和乳酸的胞内更新敏感特性,提出了一种随机模型,其中相对于非天然蛋白结构的持续时间,聚糖修饰的延迟发作协调了错误折叠的单体的优先降解并保留了天然的破坏分子。新合成的内源性转铁蛋白响应ERManI浓度升高而降解,而未糖基化的分泌糖蛋白白蛋白不受影响。综上所述,这些发现表明有效的构象成熟可以作为广泛的初始质量控制标准糖蛋白的数量。

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