共晶结构揭示了FSEN1抑制FSP1的机制。

Cocrystal structure reveals the mechanism of FSP1 inhibition by FSEN1.

作者信息

Zhang Sitao, Megarioti Amalia H, Hendricks Joseph M, Zhou Junshu, Sun Qingxiang, Jia Da, Olzmann James A

机构信息

Key Laboratory of Birth Defects and Related Diseases of Women and Children, Department of Paediatrics, West China Second University Hospital, State Key Laboratory of Biotherapy, Sichuan University, Chengdu, Sichuan 610041, China.

Department of Molecular and Cell Biology, University of California, Berkeley CA 94720.

出版信息

Proc Natl Acad Sci U S A. 2025 Jun 3;122(22):e2505197122. doi: 10.1073/pnas.2505197122. Epub 2025 May 29.

Abstract

FSP1 is an FAD-dependent oxidoreductase that uses NAD(P)H to regenerate the reduced forms of lipophilic quinone antioxidants, such as coenzyme Q10 and vitamin K. These quinone antioxidants function as radical scavenging agents that prevent the propagation of lipid peroxidation and the induction of ferroptosis. Although several small-molecule inhibitors of FSP1 have been developed and found to sensitize cancer cells to ferroptosis, our understanding of their molecular mechanisms remains limited and no structures of FSP1 in complex with its inhibitors have been solved. Here, we solve the cocrystal structure of FSP1 in complex with the FSP1 inhibitor FSEN1, revealing that FSEN1 binds within the FSP1 substrate-binding pocket. FSEN1 makes key interactions with a critical phenylalanine, which is absent in mouse FSP1, providing an explanation for the selectivity of FSEN1 for human FSP1. These conclusions are supported by mutagenesis of FSP1 and biochemical and cellular assays of FSP1 function. Our findings provide the first cocrystal structure of FSP1 in complex with an inhibitor, enhancing our understanding of the mechanism of FSP1 inhibition and enabling future rational medicinal chemistry efforts to advance FSP1 inhibitors as therapeutics.

摘要

FSP1是一种依赖黄素腺嘌呤二核苷酸(FAD)的氧化还原酶,它利用烟酰胺腺嘌呤二核苷酸磷酸(NAD(P)H)来再生亲脂性醌类抗氧化剂的还原形式,如辅酶Q10和维生素K。这些醌类抗氧化剂作为自由基清除剂,可防止脂质过氧化的传播和铁死亡的诱导。尽管已经开发出几种FSP1的小分子抑制剂,并发现它们能使癌细胞对铁死亡敏感,但我们对其分子机制的了解仍然有限,且尚未解析出FSP1与其抑制剂复合物的结构。在此,我们解析了FSP1与FSP1抑制剂FSEN1复合物的共晶体结构,揭示FSEN1结合在FSP1的底物结合口袋内。FSEN1与一个关键的苯丙氨酸发生关键相互作用,而该苯丙氨酸在小鼠FSP1中不存在,这就解释了FSEN1对人FSP1的选择性。FSP1的诱变以及FSP1功能的生化和细胞分析支持了这些结论。我们的研究结果提供了FSP1与抑制剂复合物的首个共晶体结构,加深了我们对FSP1抑制机制的理解,并为未来合理的药物化学努力提供了可能,以推动FSP1抑制剂成为治疗药物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/698c/12146761/138aaae2cbea/pnas.2505197122fig01.jpg

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