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Endoplasmic reticulum oxidoreductin-1α (Ero1α) improves folding and secretion of mutant proinsulin and limits mutant proinsulin-induced endoplasmic reticulum stress

机译:内质网氧化还原素-1α(Ero1α)改善突变体胰岛素原的折叠和分泌,并限制突变体胰岛素原诱导的内质网应激

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摘要

Upon chronic up-regulation of proinsulin synthesis, misfolded proinsulin can accumulate in the endoplasmic reticulum (ER) of pancreatic β-cells, promoting ER stress and type 2 diabetes mellitus. In Mutant Ins-gene-induced Diabetes of Youth (MIDY), misfolded mutant proinsulin impairs ER exit of co-expressed wild-type proinsulin, limiting insulin production and leading to eventual β-cell death. In this study we have investigated the hypothesis that increased expression of ER oxidoreductin-1α (Ero1α), despite its established role in the generation of H2O2, might nevertheless be beneficial in limiting proinsulin misfolding and its adverse downstream consequences. Increased Ero1α expression is effective in promoting wild-type proinsulin export from cells co-expressing misfolded mutant proinsulin. In addition, we find that upon increased Ero1α expression, some of the MIDY mutants themselves are directly rescued from ER retention. Secretory rescue of proinsulin-G(B23)V is correlated with improved oxidative folding of mutant proinsulin. Indeed, using three different variants of Ero1α, we find that expression of either wild-type or an Ero1α variant lacking regulatory disulfides can rescue mutant proinsulin-G(B23)V, in parallel with its ability to provide an oxidizing environment in the ER lumen, whereas beneficial effects were less apparent for a redox-inactive form of Ero1. Increased expression of protein disulfide isomerase antagonizes the rescue provided by oxidatively active Ero1. Importantly, ER stress induced by misfolded proinsulin was limited by increased expression of Ero1α, suggesting that enhancing the oxidative folding of proinsulin may be a viable therapeutic strategy in the treatment of type 2 diabetes.
机译:在胰岛素原合成的慢性上调后,错误折叠的胰岛素原会积聚在胰腺β细胞的内质网(ER)中,从而促进ER应激和2型糖尿病。在突变型Ins基因诱导的青年糖尿病(MIDY)中,错误折叠的突变型胰岛素原会损害共表达的野生型胰岛素原的ER出口,从而限制胰岛素的产生并最终导致β细胞死亡。在这项研究中,我们研究了一个假设,即尽管ER氧化还原蛋白1α(Ero1α)在H2O2的产生中起着确定的作用,但其表达的增加仍可能有利于限制胰岛素原的错误折叠及其不利的下游后果。 Ero1α表达的增加可有效促进共表达错误折叠的突变胰岛素原的细胞中野生型胰岛素原的输出。此外,我们发现,随着Ero1α表达的增加,一些MIDY突变体本身直接从ER保留中解救出来。胰岛素原-G(B23)V的分泌拯救与突变体胰岛素原的氧化折叠改善有关。确实,使用Ero1α的三种不同变体,我们发现野生型或缺乏调节性二硫键的Ero1α变体的表达都可以挽救突变型胰岛素原G(B23)V,同时在ER内腔提供氧化环境。 ,而对Ero1的氧化还原非活性形式的有益效果则不太明显。蛋白质二硫键异构酶表达的增加拮抗了具有氧化活性的Ero1的拯救作用。重要的是,由错误折叠的胰岛素原诱导的内质网应激受到Ero1α表达增加的限制,这表明增强胰岛素原的氧化折叠可能是治疗2型糖尿病的可行策略。

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