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Melanoma Persister Cells are Tolerant to BRAF/MEK Inhibitors Via ACOX1-Mediated Fatty Acid Oxidation

68 Pages Posted: 10 Apr 2020 Publication Status: Published

See all articles by Shensi Shen

Shensi Shen

Gustave Roussy Cancer Campus

Sara Faouzi

Gustave Roussy Cancer Campus

Sylvie Souquere

Gustave Roussy Cancer Campus

Severine Roy

Gustave Roussy Cancer Campus

Emilie Routier

Gustave Roussy Cancer Campus

Cristina Libenciuc

Université Paris XI Sud - Gustave Roussy Cancer Campus

Fabrice André

Gustave Roussy Cancer Campus

Gérard Pierron

Gustave Roussy Cancer Campus

Jean-Yves Scoazec

University of Paris-Saclay

Caroline Robert

Université Paris XI Sud - Gustave Roussy Cancer Campus

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Abstract

Emerging evidences indicate that non-mutational drug tolerance mechanisms underlie the survival of residual cancer “persister” cells. Here, we find that BRAF(V600E)-mutant melanoma persister cells tolerant to BRAF/MEK inhibitors switch their metabolism from glycolysis to oxidative respiration supported by peroxisomal fatty acid β-oxidation (FAO) that is transcriptionally regulated by PPARα. Knockdown of the key peroxisomal FAO enzyme, ACOX1, as well as treatment with the peroxisomal FAO inhibitor thioridazine specifically suppresses the oxidative respiration of persister cells and significantly decreased their emergence. Consistently, combination treatment of BRAF/MEK inhibitors with thioridazine in human melanoma-bearing mice results in a durable anti-tumor response. In BRAF(V600E) melanoma samples from patients treated with BRAF/MEK inhibitors, higher baseline expression of FAO-related genes and PPARα correlate with patients’ outcomes. These results pave the way for a new metabolic strategy to overcome drug resistance.

Keywords: cancer persister cell, peroxisome, fatty acid oxidation, targeted therapy

Suggested Citation

Shen, Shensi and Faouzi, Sara and Souquere, Sylvie and Roy, Severine and Routier, Emilie and Libenciuc, Cristina and André, Fabrice and Pierron, Gérard and Scoazec, Jean-Yves and Robert, Caroline, Melanoma Persister Cells are Tolerant to BRAF/MEK Inhibitors Via ACOX1-Mediated Fatty Acid Oxidation. Available at SSRN: https://ssrn.com/abstract=3565024 or http://dx.doi.org/10.2139/ssrn.3565024
This version of the paper has not been formally peer reviewed.

Shensi Shen (Contact Author)

Gustave Roussy Cancer Campus ( email )

114 Rue Edouard Vaillant
94800 Villejuif
France

Sara Faouzi

Gustave Roussy Cancer Campus ( email )

114 Rue Edouard Vaillant
94800 Villejuif
France

Sylvie Souquere

Gustave Roussy Cancer Campus ( email )

114 Rue Edouard Vaillant
94800 Villejuif
France

Severine Roy

Gustave Roussy Cancer Campus ( email )

114 Rue Edouard Vaillant
94800 Villejuif
France

Emilie Routier

Gustave Roussy Cancer Campus ( email )

114 Rue Edouard Vaillant
94800 Villejuif
France

Cristina Libenciuc

Université Paris XI Sud - Gustave Roussy Cancer Campus ( email )

114 Rue Edouard Vaillant
94800 Villejuif
France

Fabrice André

Gustave Roussy Cancer Campus ( email )

114 Rue Edouard Vaillant
94800 Villejuif
France

Gérard Pierron

Gustave Roussy Cancer Campus ( email )

114 Rue Edouard Vaillant
94800 Villejuif
France

Jean-Yves Scoazec

University of Paris-Saclay ( email )

55 Avenue de Paris
Versailles, 78000
France

Caroline Robert

Université Paris XI Sud - Gustave Roussy Cancer Campus

114 Rue Edouard Vaillant
94800 Villejuif
France

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