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首页> 外文期刊>Frontiers in Cell and Developmental Biology >Microtubules Are Essential for Mitochondrial Dynamics–Fission, Fusion, and Motility–in Dictyostelium discoideum
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Microtubules Are Essential for Mitochondrial Dynamics–Fission, Fusion, and Motility–in Dictyostelium discoideum

机译:微管对于盘基网状线粒体的线粒体动力学(裂变,融合和运动)是必不可少的。

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Mitochondrial function is dependent upon mitochondrial structure which is in turn dependent upon mitochondrial dynamics, including fission, fusion, and motility. Here we examined the relationship between mitochondrial dynamics and the cytoskeleton in Dictyostelium discoideum. Using time-lapse analysis, we quantified mitochondrial fission, fusion, and motility in the presence of cytoskeleton disrupting pharmaceuticals and the absence of the potential mitochondria-cytoskeleton linker protein, CluA. Our results indicate that microtubules are essential for mitochondrial movement, as well as fission and fusion; actin plays a less significant role, perhaps selecting the mitochondria for transport. We also suggest that CluA is not a linker protein but plays an unidentified role in mitochondrial fission and fusion. The significance of our work is to gain further insight into the role the cytoskeleton plays in mitochondrial dynamics and function. By better understanding these processes we can better appreciate the underlying mitochondrial contributions to many neurological disorders characterized by altered mitochondrial dynamics, structure, and/or function.
机译:线粒体功能取决于线粒体结构,而线粒体结构又取决于线粒体动力学,包括裂变,融合和运动。在这里,我们研究了盘基网柄线粒体中线粒体动力学与细胞骨架之间的关系。使用延时分析,我们在存在细胞骨架破坏性药物且不存在潜在的线粒体-细胞骨架连接蛋白CluA的情况下,定量了线粒体的裂变,融合和运动性。我们的结果表明,微管对于线粒体的运动以及裂变和融合至关重要。肌动蛋白的作用不太重要,也许选择线粒体进行运输。我们还建议CluA不是接头蛋白,但在线粒体裂变和融合中发挥未知作用。我们工作的意义在于进一步了解细胞骨架在线粒体动力学和功能中的作用。通过更好地理解这些过程,我们可以更好地理解线粒体对许多以线粒体动力学,结构和/或功能改变为特征的神经系统疾病的贡献。

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