普莱克汀
结蛋白
波形蛋白
中间灯丝
细胞生物学
微管蛋白
线粒体
能量代谢
细胞骨架
化学
微管
生物
内分泌学
生物化学
免疫组织化学
细胞
免疫学
作者
Kati Mado,Vladimir Chekulayev,Igor Shevchuk,Marju Puurand,Kersti Tepp,Tuuli Käämbre
出处
期刊:American Journal of Physiology-cell Physiology
[American Physical Society]
日期:2019-02-27
卷期号:316 (5): C657-C667
被引量:38
标识
DOI:10.1152/ajpcell.00303.2018
摘要
Mitochondria perform a central role in life and death of the eukaryotic cell. They are major players in the generation of macroergic compounds and function as integrated signaling pathways, including the regulation of Ca 2+ signals and apoptosis. A growing amount of evidence is demonstrating that mitochondria of muscle cells use cytoskeletal proteins (both microtubules and intermediate filaments) not only for their movement and proper cellular positioning, but also to maintain their biogenesis, morphology, function, and regulation of energy fluxes through the outer mitochondrial membrane (MOM). Here we consider the known literature data concerning the role of tubulin, plectin, desmin and vimentin in bioenergetic function of mitochondria in striated muscle cells, as well as in controlling the permeability of MOM for adenine nucleotides (ADNs). This is of great interest since dysfunctionality of these cytoskeletal proteins has been shown to result in severe myopathy associated with pronounced mitochondrial dysfunction. Further efforts are needed to uncover the pathways by which the cytoskeleton supports the functional capacity of mitochondria and transport of ADN(s) across the MOM (through voltage-dependent anion channel).
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