Mitochondria-Specific Molecular Crosstalk between Ferroptosis and Apoptosis Revealed by In Situ Raman Spectroscopy
Митохондриально-специфическое молекулярное перекрестное влияние между ферроптозом и апоптозом, выявленное методом in situ Раман-спектроскопии
2024-02-11
SCID: 54.1/svaq4gaa
Discuss with AI
ROS-independent lipid peroxidationcardiolipin-specific lipid peroxidationcytochrome c Fenton-like reactionserastin-cardiolipin interactionferroptosis-apoptosis crosstalkin situ Raman spectroscopymass spectrometrymitochondria-specific molecular crosstalkmitochondria-targeted cell death reducersmolecular dynamics simulations
Figures from the paper
Abstract (AI)
Ferroptosis and apoptosis are two types of regulated cell death that are closely associated with the pathophysiological processes of many diseases. The significance of ferroptosis-apoptosis crosstalk in cell fate determination has been reported, but the underlying molecular mechanisms are poorly understood. Herein mitochondria-mediated molecular crosstalk is explored. Based on a comprehensive spectroscopic investigation and mass spectrometry, cytochrome c-involved Fenton-like reactions and lipid peroxidation are revealed. More importantly, cytochrome c is found to induce ROS-independent and cardiolipin-specific lipid peroxidation depending on its redox state. In situ Raman spectroscopy unveiled that erastin can interrupt membrane permeability, specifically through cardiolipin, facilitating cytochrome c release from the mitochondria. Details of the erastin-cardiolipin interaction are determined using molecular dynamics simulations. This study provides novel insights into how molecular crosstalk occurs around mitochondrial membranes to trigger ferroptosis and apoptosis, with significant implications for the rational design of mitochondria-targeted cell death reducers in cancer therapy.
Key Findings
1
Cytochrome c induces ROS-independent, cardiolipin-specific lipid peroxidation in a manner dependent on its redox state.
2
Findings inform rational design of mitochondria-targeted cell death reducers for cancer therapy by revealing mitochondria-specific ferroptosis-apoptosis mechanisms.
3
In situ Raman spectroscopy shows erastin disrupts membrane permeability specifically via cardiolipin, facilitating cytochrome c release from mitochondria.
4
Mitochondria mediate molecular crosstalk between ferroptosis and apoptosis involving cytochrome c, Fenton-like reactions, and lipid peroxidation.
5
Molecular dynamics simulations elucidate details of the erastin–cardiolipin interaction that underlies membrane disruption and cytochrome c release.
Research Object
Mitochondrial membranes and associated molecules (cytochrome c and cardiolipin) involved in mitochondria-specific crosstalk between ferroptosis and apoptosis
Research Subject
Molecular mechanisms of mitochondria-mediated crosstalk between ferroptosis and apoptosis, including cytochrome c redox-state-dependent cardiolipin-specific lipid peroxidation, cytochrome c–mediated Fenton-like reactions, erastin-induced cardiolipin permeability and cytochrome c release, as revealed by in situ Raman spectroscopy, mass spectrometry and simulations
Publication Details
Publication Date
2024-02-11
Journal
Publisher
ISSN
Cited by
25
Access Type
Author Information
Download PDF
Subscribe to digest