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Human-IAPP disrupts the autophagy/lysosomal pathway in pancreatic β-cells: protective role of p62-positive cytoplasmic inclusions

机译:Human-IAPP破坏胰腺β细胞的自噬/溶酶体途径:p62阳性细胞质内含物的保护作用

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摘要

In type II diabetes (T2DM), there is a deficit in β-cells, increased β-cell apoptosis and formation of intracellular membrane-permeant oligomers of islet amyloid polypeptide (IAPP). Human-IAPP (h-IAPP) is an amyloidogenic protein co-expressed with insulin by β-cells. IAPP expression is increased with obesity, the major risk factor for T2DM. In this study we report that increased expression of human-IAPP led to impaired autophagy, due at least in part to the disruption of lysosome-dependant degradation. This action of IAPP to alter lysosomal clearance in vivo depends on its propensity to form toxic oligomers and is independent of the confounding effect of hyperglycemia. We report that the scaffold protein p62 that delivers polyubiquitinated proteins to autophagy may have a protective role against human-IAPP-induced apoptosis, apparently by sequestrating protein targets for degradation. Finally, we found that inhibition of lysosomal degradation increases vulnerability of β-cells to h-IAPP-induced toxicity and, conversely, stimulation of autophagy protects β-cells from h-IAPP-induced apoptosis. Collectively, these data imply an important role for the p62/autophagy/lysosomal degradation system in protection against toxic oligomer-induced apoptosis.
机译:在II型糖尿病(T2DM)中,β细胞缺乏,β细胞凋亡增加以及胰岛淀粉样多肽(IAPP)的细胞内膜透性低聚物形成。人IAPP(h-IAPP)是由β细胞与胰岛素共表达的淀粉样蛋白。肥胖是T2DM的主要危险因素,其IAPP表达随肥胖而增加。在这项研究中,我们报告说,人类IAPP的表达增加导致自噬受损,至少部分是由于溶酶体依赖性降解的破坏。 IAPP改变体内溶酶体清除率的这种作用取决于其形成有毒寡聚体的倾向,并且与高血糖的混杂效应无关。我们报告,脚手架蛋白p62传递多泛素化的蛋白质到自噬可能具有对人IAPP诱导的凋亡的保护作用,显然是通过隔离降解的蛋白质靶标。最后,我们发现溶酶体降解的抑制作用增加了β细胞对h-IAPP诱导的毒性的脆弱性,相反,自噬的刺激保护了β细胞免受h-IAPP诱导的凋亡的影响。总的来说,这些数据暗示了p62 /自噬/溶酶体降解系统在抵抗毒性低聚物诱导的细胞凋亡中的重要作用。

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