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  • Regulation of FSP1 myristoylation by NADPH: A novel mechanism for ferroptosis inhibition.

Regulation of FSP1 myristoylation by NADPH: A novel mechanism for ferroptosis inhibition.

Redox biology (2024-05-06)
Na Liu, Wei-Long Wu, Xiao-Rui Wan, Jing Wang, Jia-Ni Huang, Yi-Yue Jiang, Yi-Chao Sheng, Jun-Chao Wu, Zhong-Qin Liang, Zheng-Hong Qin, Yan Wang
ABSTRACT

Excitotoxicity is a prevalent pathological event in neurodegenerative diseases. The involvement of ferroptosis in the pathogenesis of excitotoxicity remains elusive. Transcriptome analysis has revealed that cytoplasmic reduced nicotinamide adenine dinucleotide phosphate (NADPH) levels are associated with susceptibility to ferroptosis-inducing compounds. Here we show that exogenous NADPH, besides being reductant, interacts with N-myristoyltransferase 2 (NMT2) and upregulates the N-myristoylated ferroptosis suppressor protein 1 (FSP1). NADPH increases membrane-localized FSP1 and strengthens resistance to ferroptosis. Arg-291 of NMT2 is critical for the NADPH-NMT2-FSP1 axis-mediated suppression of ferroptosis. This study suggests that NMT2 plays a pivotal role by bridging NADPH levels and neuronal susceptibility to ferroptosis. We propose a mechanism by which the NADPH regulates N-myristoylation, which has important implications for ferroptosis and disease treatment.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Anti-Na+/K+ ATPase α-1 Antibody, clone C464.6, clone C464.6, Upstate®, from mouse
Sigma-Aldrich
Monoclonal Anti-β-Actin antibody produced in mouse, clone AC-15, ascites fluid
Sigma-Aldrich
Kainic acid monohydrate, ≥99% (TLC)