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首页> 外文期刊>Diabetes, Obesity and Metabolism >The unfolded protein response is required to maintain the integrity of the endoplasmic reticulum, prevent oxidative stress and preserve differentiation in β-cells
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The unfolded protein response is required to maintain the integrity of the endoplasmic reticulum, prevent oxidative stress and preserve differentiation in β-cells

机译:需要展开的蛋白质反应来维持内质网的完整性,防止氧化应激并保持β细胞的分化

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Diabetes is an epidemic of worldwide proportions caused by β-cell failure. Nutrient fluctuations and insulin resistance drive β-cells to synthesize insulin beyond their capacity for protein folding and secretion and thereby activate the unfolded protein response (UPR), an adaptive signalling pathway to promote cell survival upon accumulation of unfolded protein in the endoplasmic reticulum (ER). Protein kinase-like endoplasmic reticulum kinase (PERK) signals one component of the UPR through phosphorylation of eukaryotic initiation factor 2 on the -subunit (eIF2) to attenuate protein synthesis, thereby reducing the biosynthetic burden. β-Cells uniquely require PERK-mediated phosphorylation of eIF2 to preserve cell function. Unabated protein synthesis in β-cells is sufficient to initiate a cascade of events, including oxidative stress, that are characteristic of β-cell failure observed in type 2 diabetes. In contrast to acute adaptive UPR activation, chronic activation increases expression of the proapoptotic transcription factor CAAT/enhancer-binding protein homologous protein (CHOP). Chop deletion in insulin-resistant mice profoundly increases β-cell mass and prevents β-cell failure to forestall the progression of diabetes. The findings suggest an unprecedented link by which protein synthesis and/or misfolding in the ER causes oxidative stress and should encourage the development of novel strategies to treat diabetes.
机译:糖尿病是由β细胞衰竭引起的全世界范围的流行病。营养波动和胰岛素抵抗驱使β细胞合成超出其蛋白质折叠和分泌能力的胰岛素,从而激活未折叠的蛋白质反应(UPR),这是一种适应性信号传导途径,当未折叠的蛋白质在内质网(ER)积累时促进细胞存活)。像蛋白激酶的内质网激酶(PERK)通过-亚基(eIF2)上的真核起始因子2磷酸化向UPR的一种成分发出信号,从而减弱了蛋白质的合成,从而减轻了生物合成的负担。 β细胞独特地需要PERK介导的eIF2磷酸化来保持细胞功能。 β细胞中未减弱的蛋白质合成足以引发一系列事件,包括氧化应激,这是在2型糖尿病中观察到的β细胞衰竭的特征。与急性适应性UPR激活相反,慢性激活会增加促凋亡转录因子CAAT /增强子结合蛋白同源蛋白(CHOP)的表达。胰岛素抵抗小鼠中的印章缺失可显着增加β细胞质量并防止β细胞衰竭阻止糖尿病的发展。这些发现表明,ER中的蛋白质合成和/或错误折叠会导致氧化应激,并应鼓励开发治疗糖尿病的新策略,这是前所未有的联系。

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