Aw Wen C, Garvin Michael R, Ballard J William O
School of Biotechnology and Biomolecular Sciences, The University of New South Wales, Sydney, NSW, Australia.
School of Biological Sciences, Washington State University, Pullman, WA, USA.
Adv Anat Embryol Cell Biol. 2019;231:51-74. doi: 10.1007/102_2018_2.
In this review, we provide evidence to suggest that the cost of specific mtDNA mutations can be influenced by exogenous factors. We focus on macronutrient-mitochondrial DNA interactions as factors that may differentially influence the consequences of a change as mitochondria must be flexible in its utilization of dietary proteins, carbohydrates, and fats. To understand this fundamental dynamic, we briefly discuss the energy processing pathways in mitochondria. Next, we explore the mitochondrial functions that are initiated during energy deficiency or when cells encounter cellular stress. We consider the anterograde response (nuclear control of mitochondrial function) and the retrograde response (nuclear changes in response to mitochondrial signaling) and how this mito-nuclear crosstalk may be influenced by exogenous factors such as temperature and diet. Finally, we employ Complex I of the mitochondrial electron transport system as a case study and discuss the potential role of the dietary macronutrient ratio as a strong selective force that may shape the frequencies of mitotypes in populations and species. We conclude that this underexplored field likely has implications in the fundamental disciplines of evolutionary biology and quantitative genetics and the more biomedical fields of nutrigenomics and pharmacogenomics.
在本综述中,我们提供证据表明特定线粒体DNA(mtDNA)突变的代价可能受到外源因素的影响。我们着重探讨大量营养素与线粒体DNA的相互作用,这些因素可能会对变化的后果产生不同影响,因为线粒体在利用膳食蛋白质、碳水化合物和脂肪时必须具有灵活性。为了理解这一基本动态,我们简要讨论线粒体中的能量处理途径。接下来,我们探索在能量缺乏或细胞遇到应激时启动的线粒体功能。我们考虑前向反应(线粒体功能的核控制)和逆向反应(对线粒体信号的核变化反应),以及这种线粒体-核相互作用如何受到温度和饮食等外源因素的影响。最后,我们以线粒体电子传递系统的复合物I为例进行研究,并讨论膳食大量营养素比例作为一种强大的选择力可能对种群和物种中线粒体类型频率产生影响的潜在作用。我们得出结论,这个尚未充分探索的领域可能在进化生物学和数量遗传学等基础学科以及营养基因组学和药物基因组学等更多生物医学领域具有重要意义。