Ventura-Clapier Renée, Piquereau Jérôme, Veksler Vladimir, Garnier Anne
Signaling and Cardiovascular Pathophysiology Inserm UMR-S 1180, Université Paris-Sud, Châtenay-Malabry, France.
Front Endocrinol (Lausanne). 2019 Aug 14;10:557. doi: 10.3389/fendo.2019.00557. eCollection 2019.
Mitochondria are unique organelles present in almost all cell types. They are involved not only in the supply of energy to the host cell, but also in multiple biochemical and biological processes like calcium homeostasis, production, and regulation of reactive oxygen species (ROS), pH control, or cell death. The importance of mitochondria in cell biology and pathology is increasingly recognized. Being maternally inherited, mitochondria exhibit a tissue-specificity, because most of the mitochondrial proteins are encoded by the nuclear genome. This renders them exquisitely well-adapted to the physiology of the host cell. It is thus not surprising that mitochondria show a sexual dimorphism and that they are also prone to the influence of sex chromosomes and sex hormones. Estrogens affect mitochondria through multiple processes involving membrane and nuclear estrogen receptors (ERs) as well as more direct effects. Moreover, estrogen receptors have been identified within mitochondria. The effects of estrogens on mitochondria comprise protein content and specific activity of mitochondrial proteins, phospholipid content of membranes, oxidant and anti-oxidant capacities, oxidative phosphorylation, and calcium retention capacities. Herein we will briefly review the life cycle and functions of mitochondria, the importance of estrogen receptors and the effects of estrogens on heart and skeletal muscle mitochondria.
线粒体是几乎存在于所有细胞类型中的独特细胞器。它们不仅参与为宿主细胞提供能量,还参与多种生化和生物学过程,如钙稳态、活性氧(ROS)的产生和调节、pH控制或细胞死亡。线粒体在细胞生物学和病理学中的重要性日益得到认可。由于线粒体是母系遗传的,且大多数线粒体蛋白质由核基因组编码,因此线粒体具有组织特异性。这使得它们能很好地适应宿主细胞的生理功能。因此,线粒体表现出性别二态性,并且容易受到性染色体和性激素的影响也就不足为奇了。雌激素通过涉及膜和核雌激素受体(ERs)的多个过程以及更直接的作用来影响线粒体。此外,在线粒体内也已鉴定出雌激素受体。雌激素对线粒体的影响包括线粒体蛋白质的含量和比活性、膜的磷脂含量、氧化和抗氧化能力、氧化磷酸化以及钙保留能力。在此,我们将简要回顾线粒体的生命周期和功能、雌激素受体的重要性以及雌激素对心脏和骨骼肌线粒体的影响。