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June 3, 2024Nature Communications75 citationsOpen Access

Lipid unsaturation promotes BAX and BAK pore activity during apoptosis

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SDShashank DadsenaRARodrigo Cuevas ArenasGVGuilherme de Jesus Vieira

Key Points

  • Unsaturated lipids enrich around BAK and BAX to promote pore activity during apoptosis, which directly drives mitochondrial outer membrane permeabilization.
  • Comparative lipidomics and simulations reveal that fatty acid desaturase FADS2 enhances apoptotic sensitivity and triggers downstream cGAS/STING signaling.
  • Co-treatment with unsaturated fatty acids sensitizes lung and kidney cancer cells to apoptosis; preclinical cell model requires further in vivo validation.

Abstract

Abstract BAX and BAK are proapoptotic members of the BCL2 family that directly mediate mitochondrial outer membrane permeabilition (MOMP), a central step in apoptosis execution. However, the molecular architecture of the mitochondrial apoptotic pore remains a key open question and especially little is known about the contribution of lipids to MOMP. By performing a comparative lipidomics analysis of the proximal membrane environment of BAK isolated in lipid nanodiscs, we find a significant enrichment of unsaturated species nearby BAK and BAX in apoptotic conditions. We then demonstrate that unsaturated lipids promote BAX pore activity in model membranes, isolated mitochondria and cellular systems, which is further supported by molecular dynamics simulations. Accordingly, the fatty acid desaturase FADS2 not only enhances apoptosis sensitivity, but also the activation of the cGAS/STING pathway downstream mtDNA release. The correlation of FADS2 levels with the sensitization to apoptosis of different lung and kidney cancer cell lines by co-treatment with unsaturated fatty acids supports the relevance of our findings. Altogether, our work provides an insight on how local lipid environment affects BAX and BAK function during apoptosis.

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Cite This Study

Dadsena et al. (2024) studied this question.

synapsesocial.com/papers/68e665f2b6db6435875f206chttps://doi.org/10.1038/s41467-024-49067-6
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