Department of Human Genetics, David Geffen School of Medicine, University of California-Los Angeles, Los Angeles, California USA.
Department of Human Genetics, David Geffen School of Medicine, University of California-Los Angeles, Los Angeles, California USA.
J Biol Chem. 2020 Oct 30;295(44):15054-15069. doi: 10.1074/jbc.RA120.013322. Epub 2020 Aug 27.
Strategies to increase energy expenditure are an attractive approach to reduce excess fat storage and body weight to improve metabolic health. In mammals, uncoupling protein-1 (UCP1) in brown and beige adipocytes uncouples fatty acid oxidation from ATP generation in mitochondria and promotes energy dissipation as heat. We set out to identify small molecules that enhance UCP1 levels and activity using a high-throughput screen of nearly 12,000 compounds in mouse brown adipocytes. We identified a family of compounds that increase expression and mitochondrial activity (including un-coupled respiration) in mouse brown adipocytes and human brown and white adipocytes. The mechanism of action may be through compound binding to A kinase anchoring protein (AKAP) 1, modulating its localization to mitochondria and its interaction with protein kinase A (PKA), a known node in the β-adrenergic signaling pathway. In mice, the hit compound increased body temperature, UCP1 protein levels, and thermogenic gene expression. Some of the compound effects on mitochondrial function were UCP1- or AKAP1-independent, suggesting compound effects on multiple nodes of energy regulation. Overall, our results highlight a role for AKAP1 in thermogenesis, uncoupled respiration, and regulation energy balance.
增加能量消耗的策略是减少多余脂肪储存和体重以改善代谢健康的一种有吸引力的方法。在哺乳动物中,棕色和米色脂肪细胞中的解偶联蛋白 1(UCP1)将脂肪酸氧化与线粒体中 ATP 的生成解偶联,并促进能量以热量的形式散失。我们着手使用近 12000 种化合物的高通量筛选来鉴定能增加 UCP1 水平和活性的小分子。我们鉴定了一组化合物,它们能增加小鼠棕色脂肪细胞和人棕色及白色脂肪细胞中的 表达和线粒体活性(包括解偶联呼吸)。作用机制可能是通过化合物与蛋白激酶 A(PKA)锚定蛋白激酶 A 锚定蛋白(AKAP)1 的结合,调节其在线粒体中的定位及其与 PKA 的相互作用,PKA 是β-肾上腺素能信号通路中的一个已知节点。在小鼠中,该作用化合物能提高体温、UCP1 蛋白水平和产热基因表达。该化合物对线粒体功能的一些影响与 UCP1 或 AKAP1 无关,这表明该化合物对能量调节的多个节点有影响。总的来说,我们的结果强调了 AKAP1 在产热、解偶联呼吸和调节能量平衡中的作用。