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首页> 外文期刊>The Journal of Experimental Biology >Regulation of muscle mitochondrial design [Review]
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Regulation of muscle mitochondrial design [Review]

机译:调节肌肉线粒体设计[综述]

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摘要

Mitochondria are responsible for the generation of ATP to fuel muscle contraction, Hypermetabolic stresses imposed upon muscles can lead to mitochondrial proliferation, but the resulting mitochondria greatly resemble their progenitors, During the mitochondrial biogenesis that accompanies phenotypic adaptation, the stoichiometric relationships between functional elements are preserved through shared sensitivities of respiratory genes to specific transcription factors, Although the properties of muscle mitochondria are generally thought to be highly conserved across species, there are many examples of mitochondrial differences between muscle types, species and developmental states and even within single cells, In this review, we discuss (1) the nature and regulation of gene families that allow coordinated expression of genes for mitochondrial products and (2) the regulatory mechanisms by which mitochondrial differences can arise over physiological and evolutionary time. [References: 78]
机译:线粒体负责产生ATP以促进肌肉收缩,施加在肌肉上的代谢异常压力可导致线粒体增殖,但最终的线粒体非常类似于其祖细胞。在伴随表型适应的线粒体生物发生过程中,功能元件之间的化学计量关系得以保留通过呼吸基因对特定转录因子的共有敏感性,尽管通常认为肌肉线粒体的特性在物种间高度保守,但在肌肉类型,物种和发育状态甚至单个细胞内,线粒体差异的例子很多。综述,我们讨论(1)允许线粒体产物基因协调表达的基因家族的性质和调控,以及(2)线粒体差异可在生理和进化时间内出现的调控机制。 [参考:78]

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