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Role of Mitochondria-Cytoskeleton Interactions in the Regulation of Mitochondrial Structure and Function in Cancer Stem Cells

机译:线粒体 - 细胞骨架相互作用在线粒体结构调节中的作用及癌症干细胞的功能

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摘要

Despite the promise of cancer medicine, major challenges currently confronting the treatment of cancer patients include chemoresistance and recurrence. The existence of subpopulations of cancer cells, known as cancer stem cells (CSCs), contributes to the failure of cancer therapies and is associated with poor clinical outcomes. Of note, one of the recently characterized features of CSCs is augmented mitochondrial function. The cytoskeleton network is essential in regulating mitochondrial morphology and rearrangement, which are inextricably linked to its functions, such as oxidative phosphorylation (OXPHOS). The interaction between the cytoskeleton and mitochondria can enable CSCs to adapt to challenging conditions, such as a lack of energy sources, and to maintain their stemness. Cytoskeleton-mediated mitochondrial trafficking and relocating to the high energy requirement region are crucial steps in epithelial-to-mesenchymal transition (EMT). In addition, the cytoskeleton itself interplays with and blocks the voltage-dependent anion channel (VDAC) to directly regulate bioenergetics. In this review, we describe the regulation of cellular bioenergetics in CSCs, focusing on the cytoskeleton-mediated dynamic control of mitochondrial structure and function.
机译:尽管存在癌症医学的承诺,但目前面临癌症患者的治疗的主要挑战包括化学抑制和复发。癌细胞亚群存在,称为癌症干细胞(CSC),有助于癌症治疗的失败,与临床结果不良有关。值得注意的是,CSC的最近特征的特征之一是增强线粒体功能。细胞骨架网络对于调节线粒体形态和重排部是必不可少的,其与其功能无密不可分,例如氧化磷酸化(汤膦)。细胞骨架和线粒体之间的相互作用可以使CSCs适应挑战性的条件,例如缺乏能源,并保持其茎。细胞骨架介导的线粒体运输和迁移到高能要求区域是上皮 - 间充质转换(EMT)的关键步骤。此外,细胞骨架本身与依赖于电压的阴离子通道(Vdac)相互作用,以直接调节生物终端。在本综述中,我们描述了CSCS中细胞生物能器的调节,重点是细胞骨架介导的线粒体结构和功能的动态控制。

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