Department Biology, University of Rome Tor Vergata, Via Della Ricerca Scientifica, Rome, Italy.
IRCCS Fondazione Santa Lucia, Rome, Italy.
Redox Biol. 2020 Sep;36:101633. doi: 10.1016/j.redox.2020.101633. Epub 2020 Jul 9.
Low-protein/high-carbohydrate (LPHC) diet has been suggested to promote metabolic health and longevity in adult humans and animal models. However, the complex molecular underpinnings of how LPHC diet leads to metabolic benefits remain elusive. Through a multi-layered approach, here we observed that LPHC diet promotes an energy-dissipating response consisting in the parallel recruitment of canonical and non-canonical (muscular) thermogenic systems in subcutaneous white adipose tissue (sWAT). In particular, we measured Ucp1 induction in association with up-regulation of actomyosin components and several Serca (Serca1, Serca2a, Serca2b) ATPases. In beige adipocytes, we observed that AMPK activation is responsible for transducing the amino acid lowering in an enhanced fat catabolism, which sustains both Ucp1-and Serca-dependent energy dissipation. Limiting AMPK activation counteracts the expression of brown fat and muscular genes, including Ucp1 and Serca, as well as mitochondrial oxidative genes. We observed that mitochondrial reactive oxygen species are the upstream molecules controlling AMPK-mediated metabolic rewiring in amino acid-restricted beige adipocytes. Our findings delineate a novel metabolic phenotype of responses to amino acid shortage, which recapitulates some of the benefits of cool temperature in sWAT. In conclusion, this highlights LPHC diet as a valuable and practicable strategy to prevent metabolic diseases through the enhancement of mitochondrial oxidative metabolism and the recruitment of different energy dissipating routes in beige adipocytes.
低蛋白/高碳水化合物(LPHC)饮食已被证明可以促进成年人类和动物模型的代谢健康和长寿。然而,LPHC 饮食如何导致代谢益处的复杂分子基础仍难以捉摸。通过多层次的方法,我们观察到 LPHC 饮食促进了一种能量耗散反应,包括在下丘脑白色脂肪组织(sWAT)中平行招募经典和非经典(肌肉)生热系统。特别是,我们测量了 Ucp1 的诱导与肌球蛋白肌动蛋白成分和几种肌浆网 Ca2+-ATP 酶(Serca1、Serca2a、Serca2b)的上调相关联。在米色脂肪细胞中,我们观察到 AMPK 激活负责将氨基酸降低转化为增强的脂肪分解,从而维持 Ucp1 和 Serca 依赖的能量耗散。限制 AMPK 激活会拮抗棕色脂肪和肌肉基因的表达,包括 Ucp1 和 Serca 以及线粒体氧化基因。我们观察到线粒体活性氧是控制氨基酸限制的米色脂肪细胞中 AMPK 介导的代谢重编程的上游分子。我们的研究结果描绘了一种对氨基酸缺乏的新代谢表型反应,它再现了 sWAT 中低温的一些益处。总之,这凸显了 LPHC 饮食作为一种有价值且可行的策略,通过增强线粒体氧化代谢和招募米色脂肪细胞中的不同能量耗散途径来预防代谢疾病。