Laboratory of Medical Genetics, National Medical Research Center of Cardiology, Moscow, Russian Federation.
Laboratory of Angiopathology, Institute of General Pathology and Pathophysiology, Moscow, Russian Federation.
Curr Pharm Des. 2018;24(15):1711-1716. doi: 10.2174/1381612824666180115120725.
In addition to external factors, such as exercise, food and the environment, genetic predisposition makes great contribution to the development of metabolic disorders and cardiovascular disease. This review is aimed to examine the genetic basis of complex metabolic disorders conventionally described as "metabolic syndrome" (MetS), with the special focus on currently known mutations in the nuclear and mitochondrial genomes, which are associated with both the individual components of MetS and combinations thereof, and also on the studies of the relationship of MetS phenotype as a binary trait. The defects in the mitochondrial genome should be considered as one of the possible genetic reasons leading to MetS. It is known that mitochondrial dysfunction is closely associated with metabolic disorders, as mitochondria are the center of energy metabolism. Consequently, the changes in mitochondrial genes and their functions affect regulation of metabolism. Until now, the role of mitochondrial DNA damage in the development of cardiovascular diseases, age-related and metabolic disorders is still poorly understood. The results of performed studies would help assessing the role of mitochondrial DNA mutations in susceptibility to metabolic syndrome and related metabolic diseases.
除了运动、饮食和环境等外部因素外,遗传易感性对代谢紊乱和心血管疾病的发展也有很大贡献。本综述旨在探讨通常被描述为“代谢综合征”(MetS)的复杂代谢紊乱的遗传基础,特别关注核基因组和线粒体基因组中目前已知的突变,这些突变与 MetS 的各个组成部分及其组合有关,也与 MetS 表型作为二元特征的研究有关。线粒体基因组的缺陷应被视为导致 MetS 的可能遗传原因之一。众所周知,线粒体功能障碍与代谢紊乱密切相关,因为线粒体是能量代谢的中心。因此,线粒体基因及其功能的变化会影响代谢的调节。到目前为止,线粒体 DNA 损伤在心血管疾病、与年龄相关的代谢紊乱和代谢紊乱中的作用仍知之甚少。进行的研究结果将有助于评估线粒体 DNA 突变在代谢综合征和相关代谢疾病易感性中的作用。