Angal Biotechnology Co., Ltd., Life Health Town, National High-Tech Development Zone, Suzhou, China.
JLP Health GmbH, Vienna, Austria.
Sci Rep. 2024 Sep 3;14(1):20509. doi: 10.1038/s41598-024-71722-7.
Natural compounds constitute a major resource for the development of medicines for multiple diseases. While many natural compounds show strong biological activity, the mechanisms that confer clinical benefits are often elusive and have been attributed to multiple pathways. Periplogenin (PPG), a natural compound isolated from Cortex periplocae, exhibits strong anti-tumor activities in several human cancer cell lines. However, its molecular mode of action remained unclear. In this study, we leveraged a forward genetic screening approach in DU145 prostate cancer cells to uncover the molecular target of PPG using chemical mutagenesis. Next generation sequencing revealed that a single amino acid substitution at amino acid 804 in ATP1A1 (ATPase Na + /K + Transporting Subunit Alpha 1) confers resistance to the cytotoxic activity of PPG. Mechanistically, ATP1A1 T804 forms a hydrogen bond with PPG which is abolished by the T804A substitution in ATP1A1, resulting in resistance to PPG treatment in vitro. Importantly, in vivo, PPG strongly suppressed tumor development in a DU145 xenograft model whereas DU145 xenograft tumors carrying a ATP1A1-T804A mutation were largely unaffected by the treatment. These findings demonstrate that PPG suppresses the growth of DU145 prostate cancer cells in vitro and in vivo by directly binding to ATP1A1 and highlight the power of our unbiased forward genetic screening approach to uncover direct drug target structures at single amino acid resolution.
天然化合物是开发多种疾病药物的主要资源。虽然许多天然化合物表现出很强的生物活性,但赋予其临床益处的机制往往难以捉摸,并归因于多种途径。从杠柳皮中分离得到的天然化合物杠柳苷元(PPG)在几种人癌细胞系中表现出很强的抗肿瘤活性。然而,其分子作用机制尚不清楚。在这项研究中,我们利用 DU145 前列腺癌细胞的正向遗传筛选方法,通过化学诱变来揭示 PPG 的分子靶标。下一代测序揭示,ATP1A1(ATPase Na + / K + 转运亚基α 1)中第 804 位氨基酸的单个氨基酸取代赋予了对 PPG 细胞毒性活性的抗性。从机制上讲,ATP1A1 的 T804 与 PPG 形成氢键,而 ATP1A1 中的 T804A 取代则破坏了这种氢键,导致对 PPG 治疗的体外抗性。重要的是,体内,PPG 强烈抑制了 DU145 异种移植模型中的肿瘤发展,而携带 ATP1A1-T804A 突变的 DU145 异种移植肿瘤对治疗基本没有影响。这些发现表明,PPG 通过直接与 ATP1A1 结合来抑制 DU145 前列腺癌细胞的体外和体内生长,并突出了我们无偏正向遗传筛选方法在以单氨基酸分辨率揭示直接药物靶标结构方面的强大功能。