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首页> 外文期刊>Cell death & disease. >Activation of Piezo1 sensitizes cells to TRAIL-mediated apoptosis through mitochondrial outer membrane permeability
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Activation of Piezo1 sensitizes cells to TRAIL-mediated apoptosis through mitochondrial outer membrane permeability

机译:压电的活化1通过线粒体外膜渗透性敏感细胞以进行介导的细胞凋亡

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摘要

TRAIL specifically induces apoptosis in cancer cells without affecting healthy cells. However, TRAIL's cancer cytotoxicity was insufficient in clinical trials. Circulatory-shear stress is known to sensitize cancer cells to TRAIL. In this study, we examine the mechanism of this TRAIL sensitization with the goal of translating it to static conditions. GsMTx-4, a Piezo1 inhibitor, was found to reduce shear stress-related TRAIL sensitization, implicating Piezo1 activation as a potential TRAIL-sensitizer. The Piezo1 agonist Yoda1 recreated shear stress-induced TRAIL sensitization under static conditions. A significant increase in apoptosis occurred when PC3, COLO 205, or MDA-MB-231 cells were treated with Yoda1 and TRAIL in combination, but not in Bax-deficient DU145 cells. Calpastatin inhibited apoptosis in Yoda1-TRAIL treated cells, indicating that calpain activation is necessary for apoptosis by Yoda1 and TRAIL. Yoda1 and TRAIL treated PC3 cells showed increased mitochondrial outer membrane permeability (MOMP), mitochondrial depolarization, and activated Bax. This implies that Piezo1 activation sensitizes cancer cells to TRAIL through a calcium influx that activates calpains. The Calpains then induce MOMP by enhancing Bax activation. From these experiments a computational model was developed to simulate apoptosis for cells treated with TRAIL and increased calcium. The computational model elucidated the proapoptotic or antiapoptotic roles of Bax, Bcl-2, XIAP, and other proteins important in the mitochondrial-apoptotic signaling pathway.
机译:小径特异性诱导癌细胞的细胞凋亡而不影响健康细胞。然而,普通的癌症细胞毒性在临床试验中不足。已知循环 - 剪切应力使癌细胞敏感到痕迹。在这项研究中,我们研究了这一痕迹致敏的机制,目标是将其转化为静态条件。发现GSMTX-4是一种压电1抑制剂,以减少剪切应力相关的痕迹致敏,将压电1激活含义为潜在的尾随敏化剂。 Piezo1激动剂yoda1在静态条件下重新创建剪切应力诱导的小径敏化。当PC3,COLO 205或MDA-MB-231细胞用Yoda1和Trail组合处理,但不在Bax缺陷的DU145细胞中,发生显着增加的细胞凋亡。 Calpastatin在Yoda1-Trail处理的细胞中抑制细胞凋亡,表明Calpain活化是由Yoda1和Travel的凋亡所必需的。 Yoda1和TRAIL处理的PC3细胞显示出增加的线粒体外膜渗透率(MOMP),线粒体去极化和活化的Bax。这意味着压电1激活使癌细胞敏感到通过激活Calpains的钙流入来追踪。然后通过增强BAX活化来诱导MOMP。从这些实验开始,开发了一种计算模型以模拟用足迹和增加的钙处理细胞的细胞凋亡。计算模型阐明了BAX,BCL-2,XIAP和其他蛋白质在线粒体凋亡信号传导途径中重要的凋亡或抗曝光作用。

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