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Protein disulfide isomerases contribute differentially to the endoplasmic reticulum–associated degradation of apolipoprotein B and other substrates

机译:蛋白质二硫键异构酶对内质网相关载脂蛋白B和其他底物的降解作用不同

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ER-associated degradation (ERAD) rids the early secretory pathway of misfolded or misprocessed proteins. Some members of the protein disulfide isomerase (PDI) family appear to facilitate ERAD substrate selection and retrotranslocation, but a thorough characterization of PDIs during the degradation of diverse substrates has not been undertaken, in part because there are 20 PDI family members in mammals. PDIs can also exhibit disulfide redox, isomerization, and/or chaperone activity, but which of these activities is required for the ERAD of different substrate classes is unknown. We therefore examined the fates of unique substrates in yeast, which expresses five PDIs. Through the use of a yeast expression system for apolipoprotein B (ApoB), which is disulfide rich, we discovered that Pdi1 interacts with ApoB and facilitates degradation through its chaperone activity. In contrast, Pdi1's redox activity was required for the ERAD of CPY~* (a misfolded version of carboxypeptidase Y that has five disulfide bonds). The ERAD of another substrate, the alpha subunit of the epithelial sodium channel, was Pdi1 independent. Distinct effects of mammalian PDI homologues on ApoB degradation were then observed in hepatic cells. These data indicate that PDIs contribute to the ERAD of proteins through different mechanisms and that PDI diversity is critical to recognize the spectrum of potential ERAD substrates.
机译:ER相关降解(ERAD)消除了错误折叠或错误处理的蛋白质的早期分泌途径。蛋白质二硫键异构酶(PDI)家族的某些成员似乎促进了ERAD底物的选择和逆转,但在各种底物降解过程中尚未对PDI进行全面的表征,部分原因是在哺乳动物中有20个PDI家族成员。 PDI还可以表现出二硫键的氧化还原,异构化和/或分子伴侣活性,但是不同底物类型的ERAD需要这些活性中的哪个是未知的。因此,我们检查了表达5种PDI的酵母中独特底物的命运。通过使用富含二硫键的载脂蛋白B(ApoB)酵母表达系统,我们发现Pdi1与ApoB相互作用并通过其伴侣蛋白活性促进降解。相反,CPY〜*(具有五个二硫键的羧肽酶Y的错误折叠形式)的ERAD需要Pdi1的氧化还原活性。另一个底物,上皮钠通道的α亚基的ERAD是Pdi1独立的。然后在肝细胞中观察到哺乳动物PDI同源物对ApoB降解的不同作用。这些数据表明,PDI通过不同的机制对蛋白质的ERAD起作用,并且PDI多样性对于识别潜在ERAD底物的光谱至关重要。

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