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通过破坏涉及自噬相关蛋白5的蛋白质-蛋白质相互作用发现小分子自噬抑制剂

Discovery of Small-Molecule Autophagy Inhibitors by Disrupting the Protein-Protein Interactions Involving Autophagy-Related 5.

作者信息

Xiang Honggang, Liu Ruiqi, Zhang Xiangying, An Ran, Zhou Mi, Tan Chang, Li Qing, Su Minyi, Guo Chun, Zhou Lu, Li Yingxia, Wang Renxiao

机构信息

Department of Medicinal Chemistry, School of Pharmacy, Fudan University, 826 Zhangheng Road, Shanghai 201203, People's Republic of China.

School of Pharmaceutical Engineering, Shenyang Pharmaceutical University, Shenyang 110016, People's Republic of China.

出版信息

J Med Chem. 2023 Feb 23;66(4):2457-2476. doi: 10.1021/acs.jmedchem.2c01233. Epub 2023 Feb 7.

Abstract

One possible strategy for modulating autophagy is to disrupt the critical protein-protein interactions (PPIs) formed during this process. Our attention is on the autophagy-related 12 (ATG12)-autophagy-related 5 (ATG5)-autophagy-related 16-like 1 (ATG16L1) heterotrimer complex, which is responsible for ATG8 translocation from ATG3 to phosphatidylethanolamine. In this work, we discovered a compound with an ()-3-(2-furanylmethylene)-2-pyrrolidinone core moiety () that blocked the ATG5-ATG16L1 and ATG5-TECAIR interactions in the in vitro binding assay (IC = 1-2 μM) and also exhibited autophagy inhibition in cellular assays. The possible binding mode of to ATG5 was predicted through molecular modeling, and a batch of derivatives sharing essentially the same core moiety were synthesized and tested. The outcomes of the in vitro binding assay and the flow cytometry assay of those newly synthesized compounds were generally consistent. This work has validated our central hypothesis that small-molecule inhibitors of the PPIs involving ATG5 can tune down autophagy effectively, and their pharmaceutical potential may be further explored.

摘要

一种调节自噬的可能策略是破坏在此过程中形成的关键蛋白质-蛋白质相互作用(PPI)。我们关注的是自噬相关蛋白12(ATG12)-自噬相关蛋白5(ATG5)-自噬相关蛋白16样蛋白1(ATG16L1)异源三聚体复合物,它负责ATG8从ATG3转运至磷脂酰乙醇胺。在这项研究中,我们发现了一种具有()-3-(2-呋喃基亚甲基)-2-吡咯烷酮核心部分()的化合物,该化合物在体外结合试验中可阻断ATG5-ATG16L1和ATG5-TECAIR相互作用(IC = 1-2 μM),并且在细胞试验中也表现出自噬抑制作用。通过分子建模预测了该化合物与ATG5的可能结合模式,并合成并测试了一批具有基本相同核心部分的衍生物。那些新合成化合物的体外结合试验和流式细胞术试验结果总体一致。这项工作验证了我们的核心假设,即涉及ATG5的PPI的小分子抑制剂可以有效地降低自噬,并且它们的药物潜力可能会得到进一步探索。

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