a Department of Cell and Molecular Biology , Feinberg School of Medicine, Northwestern University , Chicago , IL , USA.
b Key Laboratory on Chemistry and Biology of Changbai Mountain Natural Drugs, School of Life Sciences, Northeast Normal University , Changchun, Jilin , China.
Autophagy. 2017 Jan 2;13(1):41-56. doi: 10.1080/15548627.2016.1240855. Epub 2016 Oct 28.
Autophagy is a housekeeping lysosomal degradation pathway important for cellular survival, homeostasis and function. Various disease models have shown that upregulation of autophagy may be beneficial to combat disease pathogenesis. However, despite several recently reported small-molecule screens for synthetic autophagy inducers, natural chemicals of diverse structures and functions have not been included in the synthetic libraries, and characterization of their roles in autophagy has been lacking. To discover novel autophagy-regulating compounds and study their therapeutic mechanisms, we used analytic chemistry approaches to isolate natural phytochemicals from a reservoir of medicinal plants used in traditional remedies. From this pilot plant metabolite library, we identified several novel autophagy-inducing phytochemicals, including Rg2. Rg2 is a steroid glycoside chemical that activates autophagy in an AMPK-ULK1-dependent and MTOR-independent manner. Induction of autophagy by Rg2 enhances the clearance of protein aggregates in a cell-based model, improves cognitive behaviors in a mouse model of Alzheimer disease, and prevents high-fat diet-induced insulin resistance. Thus, we discovered a series of autophagy-inducing phytochemicals from medicinal plants, and found that one of the compounds Rg2 mediates metabolic and neurotrophic effects dependent on activation of the autophagy pathway. These findings may help explain how medicinal plants exert the therapeutic functions against metabolic diseases.
自噬是一种重要的溶酶体降解途径,对于细胞的存活、稳态和功能至关重要。各种疾病模型表明,自噬的上调可能有助于对抗疾病的发病机制。然而,尽管最近有几项关于合成自噬诱导剂的小分子筛选报告,但天然化学物质的结构和功能多种多样,并未包含在合成文库中,并且它们在自噬中的作用也缺乏表征。为了发现新的自噬调节化合物并研究其治疗机制,我们使用分析化学方法从传统疗法中使用的药用植物库中分离天然植物化学物质。从这个中试工厂代谢产物文库中,我们鉴定出了几种新的自噬诱导植物化学物质,包括 Rg2。Rg2 是一种甾体糖苷化学物质,以 AMPK-ULK1 依赖性和 MTOR 非依赖性方式激活自噬。Rg2 诱导的自噬增强了细胞模型中蛋白质聚集体的清除,改善了阿尔茨海默病小鼠模型中的认知行为,并预防了高脂肪饮食诱导的胰岛素抵抗。因此,我们从药用植物中发现了一系列诱导自噬的植物化学物质,并发现其中一种化合物 Rg2 通过激活自噬途径介导代谢和神经营养作用。这些发现可能有助于解释药用植物如何发挥治疗代谢疾病的作用。