1. Academic Validation
  2. Lysosomal damage due to cholesterol accumulation triggers immunogenic cell death

Lysosomal damage due to cholesterol accumulation triggers immunogenic cell death

  • Autophagy. 2024 Dec 27:1-23. doi: 10.1080/15548627.2024.2440842.
Karla Alvarez-Valadez 1 2 3 Allan Sauvat 1 2 Julien Diharce 4 Marion Leduc 1 2 Gautier Stoll 1 2 Lionel Guittat 5 6 Flavia Lambertucci 1 2 Juliette Paillet 1 2 Omar Motiño 1 2 Lucille Ferret 1 2 3 Alexandra Muller 1 2 Sabrina Forveille 1 2 Maria Chiara Maiuri 1 2 Oliver Kepp 1 2 Alexandre G de Brevern 4 Harald Wodrich 7 Jonathan G Pol 1 2 Guido Kroemer 1 2 8 Mojgan Djavaheri-Mergny 1 2
Affiliations

Affiliations

  • 1 Centre de Recherche des Cordeliers, INSERM UMRS 1138, Sorbonne Université, Université Paris Cité, Équipe labellisée par la Ligue contre le Cancer, Institut Universitaire de France, Paris, France.
  • 2 Metabolomics and Cell Biology Platforms, Gustave Roussy Cancer Center, Villejuif, France.
  • 3 Faculté de Médecine, Université Paris Saclay, Paris, France.
  • 4 Université Paris Cité and Université de la Réunion, INSERM UMRS 1134, BIGR, DSIMB Bioinformatics team, Paris, France.
  • 5 Laboratoire d'Optique et Biosciences, École Polytechnique, CNRS UMR7645, INSERM U1182, Institut Polytechnique de Paris, Palaiseau, France.
  • 6 Santé, Médecine, Biologie Humaine (SMBH), Université Sorbonne Paris Nord, UFR SMBH, Bobigny, France.
  • 7 CNRS UMR 5234, Fundamental Microbiology and Pathogenicity, Université de Bordeaux, Bordeaux, France.
  • 8 Department of Biology, Hôpital Européen Georges Pompidou, AP-HP, Institut du Cancer Paris CARPEM, Paris, France.
Abstract

Cholesterol serves as a vital lipid that regulates numerous physiological processes. Nonetheless, its role in regulating cell death processes remains incompletely understood. In this study, we investigated the role of Cholesterol trafficking in immunogenic cell death. Through cell-based drug screening, we identified two antidepressants, sertraline and indatraline, as potent inducers of the nuclear translocation of TFEB (transcription factor EB). Activation of TFEB was mediated through the autophagy-independent lipidation of MAP1LC3/LC3 (microtubule associated protein 1 light chain 3). Both compounds promoted Cholesterol accumulation within lysosomes, resulting in lysosomal membrane permeabilization, disruption of Autophagy and cell death that could be reversed by Cholesterol depletion. Molecular docking analysis indicated that sertraline and indatraline have the potential to inhibit Cholesterol binding to the lysosomal Cholesterol transporters, NPC1 (NPC intracellular Cholesterol transporter 1) and NPC2. This inhibitory effect might be further enhanced by the upregulation of NPC1 and NPC2 expression by TFEB. Both antidepressants also upregulated PLA2G15 (Phospholipase A2 group XV), an Enzyme that elevates lysosomal Cholesterol. In Cancer cells, sertraline and indatraline elicited immunogenic cell death, converting dying cells into prophylactic vaccines that were able to confer protection against tumor growth in mice. In a therapeutic setting, a single dose of each compound was sufficient to significantly reduce the outgrowth of established tumors in a T-cell-dependent manner. These results identify sertraline and indatraline as immunostimulatory agents for Cancer treatment. More generally, this research shed light on novel therapeutic avenues harnessing lysosomal Cholesterol transport to regulate immunogenic cell death.Abbreviation: ATG5: Autophagy related 5; ATG13: Autophagy related 13; DKO: double knockout; ICD: immunogenic cell death; KO: knockout; LAMP1: lysosomal associated membrane protein 1; LAMP2: lysosomal associated membrane protein 2; LGALS3: Galectin 3; LDL: low-density lipoprotein; LMP: lysosomal membrane permeabilization; MAP1LC3/LC3: microtubule associated protein 1 light chain 3; MTX: mitoxantrone; NPC1: NPC intracellular Cholesterol transporter 1; NPC2: NPC intracellular Cholesterol transporter 2; TFE3: transcription factor E3; TFEB: transcription factor EB; ULK1: unc-51 like Autophagy activating kinase 1.

Keywords

Autophagy; NPC intracellular cholesterol transporter 1 and 2; TFEB; cancer; lipid transport; lysosomal membrane permeabilization.

Figures
Products