logo
Loading...
Integrated chemical and genetic screens unveil FSP1 mechanisms of ferroptosis regulation
Medicine and HealthNature Structural & Molecular Biology

Integrated chemical and genetic screens unveil FSP1 mechanisms of ferroptosis regulation

T. Nakamura, E. Mishima, et al.

Explore the groundbreaking research conducted by Toshitaka Nakamura and colleagues into the intricacies of Ferroptosis, a unique form of iron-dependent cell death. This study unveils critical mechanisms of Ferroptosis suppressor protein 1 (FSP1) and presents the discovery of novel inhibitors, promising exciting advancements in cancer therapy.... show more
Abstract
Ferroptosis, marked by iron-dependent lipid peroxidation, may present an Achilles heel for the treatment of cancers. Ferroptosis suppressor protein-1 (FSP1), as the second ferroptosis mainstay, efficiently prevents lipid peroxidation via NAD(P)H-dependent reduction of quinones. Because its molecular mechanisms have remained obscure, we studied numerous FSP1 mutations present in cancer or identified by untargeted random mutagenesis. This mutational analysis elucidates the FAD/NAD(P)H-binding site and proton-transfer function of FSP1, which emerged to be evolutionarily conserved among different NADH quinone reductases. Using random mutagenesis screens, we uncover the mechanism of action of next-generation FSP1 inhibitors. Our studies identify the binding pocket of the first FSP1 inhibitor, iFSP1, and introduce the first species-independent FSP1 inhibitor, targeting the NAD(P)H-binding pocket. Conclusively, our study provides new insights into the molecular functions of FSP1 and enables the rational design of FSP1 inhibitors targeting cancer cells.
Publisher
Nature Structural & Molecular Biology
Published On
Nov 13, 2023
Authors
Toshitaka Nakamura, Eikan Mishima, Naoya Yamada, André Santos Dias Mourão, Dietrich Trümbach, Sebastian Doll, Jonas Wanninger, Elena Lytton, Peter Sennhenn, Thamara Nishida Xavier da Silva, José Pedro Friedmann Angeli, Michael Sattler, Bettina Proneth, Marcus Conrad
Tags
Ferroptosiscancer therapyFerroptosis suppressor protein 1inhibitorsmolecular mechanismslipid peroxidationNAD(P)H-binding
Listen, Learn & Level Up
Over 10,000 hours of research content in 25+ fields, available in 22+ languages.
No more digging through PDFs, just hit play and absorb the world's latest research in your language, on your time.
listen to research audio papers with researchbunny