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MCL-1 Inhibition by Selective BH3 Mimetics Disrupts Mitochondrial Dynamics Causing Loss of Viability and Functionality of Human Cardiomyocytes

机译:选择性BH3模拟物对MCL-1的抑制作用破坏了线粒体动力学导致人类心肌细胞的活力和功能丧失

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摘要

MCL-1 is a well-characterized inhibitor of cell death that has also been shown to be a regulator of mitochondrial dynamics in human pluripotent stem cells. We used cardiomyocytes derived from human-induced pluripotent stem cells (hiPSC-CMs) to uncover whether MCL-1 is crucial for cardiac function and survival. Inhibition of MCL-1 by BH3 mimetics resulted in the disruption of mitochondrial morphology and dynamics as well as disorganization of the actin cytoskeleton. Interfering with MCL-1 function affects the homeostatic proximity of DRP-1 and MCL-1 at the outer mitochondrial membrane, resulting in decreased functionality of hiPSC-CMs. Cardiomyocytes display abnormal cardiac performance even after caspase inhibition, supporting a nonapoptotic activity of MCL-1 in hiPSC-CMs. BH3 mimetics targeting MCL-1 are promising anti-tumor therapeutics. Progression toward using BCL-2 family inhibitors, especially targeting MCL-1, depends on understanding its canonical function not only in preventing apoptosis but also in the maintenance of mitochondrial dynamics and function.
机译:MCL-1是一种很好的细胞死亡抑制剂,也已被证明是人类多能干细胞中线粒体动力学的调节剂。我们使用了人类诱导的多能干细胞(hiPSC-CMs)衍生的心肌细胞来发现MCL-1是否对心脏功能和生存至关重要。 BH3模拟物对MCL-1的抑制作用导致线粒体形态和动力学的破坏以及肌动蛋白细胞骨架的紊乱。干扰MCL-1功能会影响线粒体外膜上DRP-1和MCL-1的稳态平衡,从而导致hiPSC-CM的功能降低。甚至在caspase抑制后,心肌细胞仍显示异常的心脏功能,从而支持hiPSC-CM中MCL-1的非凋亡活性。靶向MCL-1的BH3模拟物是有前途的抗肿瘤治疗剂。使用BCL-2家族抑制剂(尤其是靶向MCL-1)的进展不仅取决于了解其规范功能,不仅在于防止细胞凋亡,而且在于维持线粒体动力学和功能。

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