1] Department of Cell and Developmental Biology, Consortium for Mitochondrial Research, University College London, London, United Kingdom [2] Institute for Human Health and Performance, University College London, London, United Kingdom.
Sci Rep. 2013;3:2467. doi: 10.1038/srep02467.
The circulating, endocrine renin-angiotensin system (RAS) is important to circulatory homeostasis, while ubiquitous tissue and cellular RAS play diverse roles, including metabolic regulation. Indeed, inhibition of RAS is associated with improved cellular oxidative capacity. Recently it has been suggested that an intra-mitochondrial RAS directly impacts on metabolism. Here we sought to rigorously explore this hypothesis. Radiolabelled ligand-binding and unbiased proteomic approaches were applied to purified mitochondrial sub-fractions from rat liver, and the impact of AngII on mitochondrial function assessed. Whilst high-affinity AngII binding sites were found in the mitochondria-associated membrane (MAM) fraction, no RAS components could be detected in purified mitochondria. Moreover, AngII had no effect on the function of isolated mitochondria at physiologically relevant concentrations. We thus found no evidence of endogenous mitochondrial AngII production, and conclude that the effects of AngII on cellular energy metabolism are not mediated through its direct binding to mitochondrial targets.
循环内分泌肾素-血管紧张素系统(RAS)对循环内稳态很重要,而无处不在的组织和细胞 RAS 则发挥着多种作用,包括代谢调节。事实上,RAS 的抑制与细胞氧化能力的提高有关。最近有人提出,线粒体内部的 RAS 会直接影响代谢。在这里,我们试图严格地验证这一假设。我们应用放射性标记配体结合和无偏蛋白质组学方法来研究大鼠肝脏的纯化线粒体亚部分,并评估 AngII 对线粒体功能的影响。虽然在与线粒体相关的膜(MAM)部分发现了高亲和力的 AngII 结合位点,但在纯化的线粒体中无法检测到 RAS 成分。此外,在生理相关浓度下,AngII 对分离的线粒体的功能没有影响。因此,我们没有发现内源性线粒体 AngII 产生的证据,并得出结论,AngII 对细胞能量代谢的影响不是通过其与线粒体靶标的直接结合来介导的。