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PED/PEA-15 Inhibits Hydrogen Peroxide-Induced Apoptosis in Ins-1E Pancreatic Beta-Cells via PLD-1

机译:PED / PEA-15通过PLD-1抑制过氧化氢诱导的Ins-1E胰腺β细胞凋亡。

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摘要

The small scaffold protein PED/PEA-15 is involved in several different physiologic and pathologic processes, such as cell proliferation and survival, diabetes and cancer. PED/PEA-15 exerts an anti-apoptotic function due to its ability to interfere with both extrinsic and intrinsic apoptotic pathways in different cell types. Recent evidence shows that mice overexpressing PED/PEA-15 present larger pancreatic islets and increased beta-cells mass. In the present work we investigated PED/PEA-15 role in hydrogen peroxide-induced apoptosis in Ins-1E beta-cells. In pancreatic islets isolated from TgPED/PEA-15 mice hydrogen peroxide-induced DNA fragmentation was lower compared to WT islets. TUNEL analysis showed that PED/PEA-15 overexpression increases the viability of Ins-1E beta-cells and enhances their resistance to apoptosis induced by hydrogen peroxide exposure. The activity of caspase-3 and the cleavage of PARP-1 were markedly reduced in Ins-1E cells overexpressing PED/PEA-15 (Ins-1EPED/PEA-15). In parallel, we observed a decrease of the mRNA levels of pro-apoptotic genes Bcl-xS and Bad. In contrast, the expression of the anti-apoptotic gene Bcl-xL was enhanced. Accordingly, DNA fragmentation was higher in control cells compared to Ins-1EPED/PEA-15 cells. Interestingly, the preincubation with propranolol, an inhibitor of the pathway of PLD-1, a known interactor of PED/PEA-15, responsible for its deleterious effects on glucose tolerance, abolishes the antiapoptotic effects of PED/PEA-15 overexpression in Ins-1E beta-cells. The same results have been obtained by inhibiting PED/PEA-15 interaction with PLD-1 in Ins-1EPED/PEA-15. These results show that PED/PEA-15 overexpression is sufficient to block hydrogen peroxide-induced apoptosis in Ins-1E cells through a PLD-1 mediated mechanism.
机译:小支架蛋白PED / PEA-15参与几种不同的生理和病理过程,例如细胞增殖和存活,糖尿病和癌症。 PED / PEA-15具有抗凋亡的功能,因为它能够干扰不同细胞类型中的外在和内在凋亡途径。最近的证据表明,过表达PED / PEA-15的小鼠表现出较大的胰岛和增加的β细胞质量。在目前的工作中,我们研究了PED / PEA-15在过氧化氢诱导的Ins-1Eβ细胞凋亡中的作用。与WT胰岛相比,在从TgPED / PEA-15小鼠分离的胰岛中,过氧化氢诱导的DNA片段化程度较低。 TUNEL分析表明,PED / PEA-15过表达增加了Ins-1Eβ细胞的活力,并增强了它们对过氧化氢暴露诱导的细胞凋亡的抵抗力。在过表达PED / PEA-15(Ins-1EPED / PEA-15)的Ins-1E细胞中,caspase-3的活性和PARP-1的切割显着降低。同时,我们观察到促凋亡基因Bcl-xS和Bad的mRNA水平下降。相反,抗凋亡基因Bcl-xL的表达增加。因此,与Ins-1EPED / PEA-15细胞相比,对照细胞中的DNA片段化更高。有趣的是,与普萘洛尔一起预孵育,它是PLD-1途径的抑制剂,PLD-1是PED / PEA-15的已知相互作用物,其对葡萄糖耐量的有害作用,消除了PED / PEA-15在Ins-中过表达的抗凋亡作用。 1E beta细胞。通过抑制Ins-1EPED / PEA-15中PED / PEA-15与PLD-1的相互作用也获得了相同的结果。这些结果表明,PED / PEA-15的过表达足以通过PLD-1介导的机制阻断过氧化氢诱导的Ins-1E细胞凋亡。

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