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首页> 外文期刊>FEBS Open Bio >Transmembrane thioredoxin‐related protein TMX1 is reversibly oxidized in response to protein accumulation in the endoplasmic reticulum
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Transmembrane thioredoxin‐related protein TMX1 is reversibly oxidized in response to protein accumulation in the endoplasmic reticulum

机译:跨膜硫氧还蛋白相关蛋白TMX1响应内质网中的蛋白积累而被可逆地氧化

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Numerous secretory and membrane proteins undergo post‐translational modifications in the endoplasmic reticulum (ER), and the formation of disulfide bonds is a modification that is critical for proper protein folding. The mammalian ER contains a large family of oxidoreductases that are considered to catalyze thiol/disulfide exchange and ensure the maintenance of a redox environment within the ER. Disruption of ER homeostasis causes an accumulation of misfolded and unfolded proteins, a condition termed ER stress. Despite advances in our understanding of the ER stress response and its downstream signaling pathway, it remains unclear how ER redox balance is controlled and restored in the stressed ER. In this study, we determined that brefeldin A (BFA)‐induced protein accumulation in the ER triggers reversible oxidation of transmembrane thioredoxin‐related protein 1 (TMX1). Conversion of TMX1 to the oxidized state preceded the induction of immunoglobulin‐binding protein, a downstream marker of ER stress. Oxidized TMX1 reverted to the basal reduced state after BFA removal, and our results suggest that glutathione is involved in maintaining TMX1 in the reduced form. These findings provide evidence for a redox imbalance caused by protein overload, and demonstrate the existence of a pathway that helps restore ER homeostasis during poststress recovery.
机译:许多分泌蛋白和膜蛋白会在内质网(ER)中进行翻译后修饰,而二硫键的形成对于正确折叠蛋白至关重要。哺乳动物的ER包含大量氧化还原酶家族,被认为可催化硫醇/二硫键交换并确保在ER内维持氧化还原环境。内质网稳态的破坏会导致错误折叠和未折叠蛋白质的积累,这种情况称为内质网应激。尽管我们对内质网应激反应及其下游信号通路的理解有了进步,但仍不清楚如何在应激内质网中控制和恢复内质网氧化还原平衡。在这项研究中,我们确定了布雷菲德菌素A(BFA)诱导的ER中的蛋白积累触发了跨膜硫氧还蛋白相关蛋白1(TMX1)的可逆氧化。 TMX1转化为氧化态先于免疫球蛋白结合蛋白的诱导,这是内质网应激的下游标记。去除BFA后,氧化的TMX1会恢复为基础还原状态,我们的结果表明,谷胱甘肽参与了将TMX1保持在还原形式的过程。这些发现为由蛋白质超载引起的氧化还原失衡提供了证据,并证明了在应激后恢复过程中有助于恢复内质网稳态的途径的存在。

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