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Autophagy capacity and sub-mitochondrial heterogeneity shape Bnip3-induced mitophagy regulation of apoptosis

机译:自噬能力和亚线粒体异质性形状Bnip3诱导细胞凋亡的线粒体调控

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摘要

BackgroundMitochondria are key regulators of apoptosis. In response to stress, BH3-only proteins activate pro-apoptotic Bcl2 family proteins Bax and Bak, which induce mitochondrial outer membrane permeabilization (MOMP). While the large-scale mitochondrial release of pro-apoptotic proteins activates caspase-dependent cell death, a limited release results in sub-lethal caspase activation which promotes tumorigenesis. Mitochondrial autophagy (mitophagy) targets dysfunctional mitochondria for degradation by lysosomes, and undergoes extensive crosstalk with apoptosis signaling, but its influence on apoptosis remains undetermined. The BH3-only protein Bnip3 integrates apoptosis and mitophagy signaling at different signaling domains. Bnip3 inhibits pro-survival Bcl2 members via its BH3 domain and activates mitophagy through its LC3 Interacting Region (LIR), which is responsible for binding to autophagosomes. Previously, we have shown that Bnip3-activated mitophagy prior to apoptosis induction can reduce mitochondrial activation of caspases, suggesting that a reduction to mitochondrial levels may be pro-survival. An outstanding question is whether organelle dynamics and/or recently discovered subcellular variations of protein levels responsible for both MOMP sensitivity and crosstalk between apoptosis and mitophagy can influence the cellular apoptosis decision event. To that end, here we undertook a systems biology analysis of mitophagy-apoptosis crosstalk at the level of cellular mitochondrial populations.
机译:背景线粒体是细胞凋亡的关键调节因子。响应压力,仅BH3蛋白激活促凋亡Bcl2家族蛋白Bax和Bak,从而诱导线粒体外膜通透性(MOMP)。虽然促凋亡蛋白的大规模线粒体释放激活了caspase依赖的细胞死亡,但有限的释放导致亚致死性caspase激活,从而促进了肿瘤的发生。线粒体自噬(线粒体)靶向功能障碍的线粒体,以通过溶酶体降解,并与细胞凋亡信号发生广泛串扰,但其对细胞凋亡的影响仍未确定。仅BH3蛋白Bnip3在不同的信号传导域整合了凋亡和线粒体信号传导。 Bnip3通过其BH3结构域抑制生存前的Bcl2成员,并通过其LC3相互作用区域(LIR)激活线粒体,该区域负责与自噬体的结合。以前,我们已经表明凋亡诱导之前Bnip3激活的线粒体可以减少胱天蛋白酶的线粒体激活,这表明线粒体水平的降低可能是生存的。一个悬而未决的问题是,细胞器动力学和/或最近发现的同时引起MOMP敏感性和细胞凋亡与线粒体之间串扰的蛋白质水平亚细胞变异是否会影响细胞凋亡的决定性事件。为此,我们在细胞线粒体群体的水平上对线粒体-细胞凋亡的串扰进行了系统生物学分析。

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