Janssen Joëlle J E, Grefte Sander, Keijer Jaap, de Boer Vincent C J
Human and Animal Physiology, Wageningen University & Research, Wageningen, Netherlands.
Front Physiol. 2019 Feb 12;10:78. doi: 10.3389/fphys.2019.00078. eCollection 2019.
Mitochondria are cellular organelles that control metabolic homeostasis and ATP generation, but also play an important role in other processes, like cell death decisions and immune signaling. Mitochondria produce a diverse array of metabolites that act in the mitochondria itself, but also function as signaling molecules to other parts of the cell. Communication of mitochondria with the nucleus by metabolites that are produced by the mitochondria provides the cells with a dynamic regulatory system that is able to respond to changing metabolic conditions. Dysregulation of the interplay between mitochondrial metabolites and the nucleus has been shown to play a role in disease etiology, such as cancer and type II diabetes. Multiple recent studies emphasize the crucial role of nutritional cofactors in regulating these metabolic networks. Since B-vitamins directly regulate mitochondrial metabolism, understanding the role of B-vitamins in mito-nuclear communication is relevant for therapeutic applications and optimal dietary lifestyle. In this review, we will highlight emerging concepts in mito-nuclear communication and will describe the role of B-vitamins in mitochondrial metabolite-mediated nuclear signaling.
线粒体是控制代谢稳态和ATP生成的细胞器,但在其他过程中也发挥着重要作用,如细胞死亡决定和免疫信号传导。线粒体产生多种代谢物,这些代谢物在其自身发挥作用,同时也作为信号分子作用于细胞的其他部分。线粒体产生的代谢物与细胞核之间的通讯为细胞提供了一个动态调节系统,使其能够对不断变化的代谢条件做出反应。线粒体代谢物与细胞核之间相互作用的失调已被证明在疾病病因学中起作用,如癌症和II型糖尿病。最近的多项研究强调了营养辅助因子在调节这些代谢网络中的关键作用。由于B族维生素直接调节线粒体代谢,了解B族维生素在线粒体与细胞核通讯中的作用对于治疗应用和优化饮食生活方式具有重要意义。在这篇综述中,我们将重点介绍线粒体与细胞核通讯中的新兴概念,并描述B族维生素在线粒体代谢物介导的核信号传导中的作用。