Proinsulin folding and trafficking defects trigger a common pathological disturbance of endoplasmic reticulum homeostasis.

IF 4.5 3区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Protein Science Pub Date : 2024-04-01 DOI:10.1002/pro.4949
Anoop Arunagiri, Maroof Alam, Leena Haataja, Hassan Draz, Bashiyer Alasad, Praveen Samy, Nadeed Sadique, Yue Tong, Ying Cai, Hadis Shakeri, Federica Fantuzzi, Hazem Ibrahim, Insook Jang, Vaibhav Sidarala, Scott A Soleimanpour, Leslie S Satin, Timo Otonkoski, Miriam Cnop, Pamela Itkin-Ansari, Randal J Kaufman, Ming Liu, Peter Arvan
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Abstract

Primary defects in folding of mutant proinsulin can cause dominant-negative proinsulin accumulation in the endoplasmic reticulum (ER), impaired anterograde proinsulin trafficking, perturbed ER homeostasis, diminished insulin production, and β-cell dysfunction. Conversely, if primary impairment of ER-to-Golgi trafficking (which also perturbs ER homeostasis) drives misfolding of nonmutant proinsulin-this might suggest bi-directional entry into a common pathological phenotype (proinsulin misfolding, perturbed ER homeostasis, and deficient ER export of proinsulin) that can culminate in diminished insulin storage and diabetes. Here, we've challenged β-cells with conditions that impair ER-to-Golgi trafficking, and devised an accurate means to assess the relative abundance of distinct folded/misfolded forms of proinsulin using a novel nonreducing SDS-PAGE/immunoblotting protocol. We confirm abundant proinsulin misfolding upon introduction of a diabetogenic INS mutation, or in the islets of db/db mice. Whereas blockade of proinsulin trafficking in Golgi/post-Golgi compartments results in intracellular accumulation of properly-folded proinsulin (bearing native disulfide bonds), impairment of ER-to-Golgi trafficking (regardless whether such impairment is achieved by genetic or pharmacologic means) results in decreased native proinsulin with more misfolded proinsulin. Remarkably, reversible ER-to-Golgi transport defects (such as treatment with brefeldin A or cellular energy depletion) upon reversal quickly restore the ER folding environment, resulting in the disappearance of pre-existing misfolded proinsulin while preserving proinsulin bearing native disulfide bonds. Thus, proper homeostatic balance of ER-to-Golgi trafficking is linked to a more favorable proinsulin folding (as well as trafficking) outcome.

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原胰岛素折叠和贩运缺陷引发了内质网平衡的常见病理紊乱。
突变原胰岛素折叠的初级缺陷可导致显性阴性原胰岛素在内质网(ER)中积聚、原胰岛素前向运输受损、ER平衡紊乱、胰岛素分泌减少以及β细胞功能障碍。反之,如果ER-高尔基体转运(也会扰乱ER平衡)的原发性损伤导致了非突变性胰岛素的错误折叠,这可能表明双向进入了共同的病理表型(胰岛素错误折叠、ER平衡紊乱和胰岛素的ER输出缺陷),最终导致胰岛素储存减少和糖尿病。在这里,我们用影响ER-高尔基体转运的条件对β细胞进行了挑战,并设计了一种精确的方法,利用新颖的非还原SDS-PAGE/免疫印迹方案来评估不同折叠/错折叠形式的脯胰岛素的相对丰度。我们证实,在引入致糖尿病 INS 突变或在 db/db 小鼠的胰岛中,会出现大量的原胰岛素错误折叠。阻断高尔基体/后高尔基体中的脯胰岛素转运会导致细胞内正常折叠的脯胰岛素(带有原生二硫键)堆积,而阻断ER-高尔基体转运(无论这种阻断是通过遗传或药物手段实现的)则会导致原生脯胰岛素减少,而错误折叠的脯胰岛素增多。值得注意的是,可逆的ER-高尔基体转运缺陷(如用布雷非丁 A 或细胞能量耗竭处理)一旦逆转,就会迅速恢复ER折叠环境,导致先前存在的折叠错误的脯激胰岛素消失,同时保留带有原生二硫键的脯激胰岛素。因此,ER 到高尔基体运输的适当平衡与更有利的原胰岛素折叠(以及运输)结果有关。
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来源期刊
Protein Science
Protein Science 生物-生化与分子生物学
CiteScore
12.40
自引率
1.20%
发文量
246
审稿时长
1 months
期刊介绍: Protein Science, the flagship journal of The Protein Society, is a publication that focuses on advancing fundamental knowledge in the field of protein molecules. The journal welcomes original reports and review articles that contribute to our understanding of protein function, structure, folding, design, and evolution. Additionally, Protein Science encourages papers that explore the applications of protein science in various areas such as therapeutics, protein-based biomaterials, bionanotechnology, synthetic biology, and bioelectronics. The journal accepts manuscript submissions in any suitable format for review, with the requirement of converting the manuscript to journal-style format only upon acceptance for publication. Protein Science is indexed and abstracted in numerous databases, including the Agricultural & Environmental Science Database (ProQuest), Biological Science Database (ProQuest), CAS: Chemical Abstracts Service (ACS), Embase (Elsevier), Health & Medical Collection (ProQuest), Health Research Premium Collection (ProQuest), Materials Science & Engineering Database (ProQuest), MEDLINE/PubMed (NLM), Natural Science Collection (ProQuest), and SciTech Premium Collection (ProQuest).
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