An OMA1 redox site controls mitochondrial homeostasis, sarcoma growth, and immunogenicity

Author:

Miallot Richard1,Millet Virginie1,Groult Yann1,Modelska Angelika1,Crescence Lydie2,Roulland Sandrine1,Henri Sandrine1ORCID,Malissen Bernard13,Brouilly Nicolas1,Panicot-Dubois Laurence2ORCID,Vincentelli Renaud1,Sulzenbacher Gerlind1,Finetti Pascal4,Dutour Aurélie5,Blay Jean-Yves56,Bertucci François4,Galland Franck1,Naquet Philippe1ORCID

Affiliation:

1. Aix-Marseille Université

2. Aix Marseille Université, INSERM 1263, INRAE 1260, Plateforme d'Imagerie Vasculaire et de Microscopie Intravitale, C2VN, Marseille, France

3. Centre d’Immunophénomique, Aix Marseille Université

4. Laboratory of Predictive Oncology, Centre de Recherche en Cancérologie de Marseille (CRCM), Institut Paoli-Calmettes, Aix-Marseille Université

5. Childhood Cancers and Cell Death Laboratory, Cancer Research Center of Lyon (CRCL), INSERM 1052, CNRS, Lyon, France

6. Department of Medicine, Centre Léon Bérard, UNICANCER & University Lyon I, Lyon, France

Abstract

Aggressive tumors often display mitochondrial dysfunction. Upon oxidative stress, mitochondria undergo fission through OMA1-mediated cleavage of the fusion effector OPA1. In yeast, a redox-sensing switch participates in OMA1 activation. 3D modeling of OMA1 comforted the notion that cysteine 403 might participate in a similar sensor in mammalian cells. Using prime editing, we developed a mouse sarcoma cell line in which OMA1 cysteine 403 was mutated in alanine. Mutant cells showed impaired mitochondrial responses to stress including ATP production, reduced fission, resistance to apoptosis, and enhanced mitochondrial DNA release. This mutation prevented tumor development in immunocompetent, but not nude or cDC1 dendritic cell–deficient, mice. These cells prime CD8+lymphocytes that accumulate in mutant tumors, whereas their depletion delays tumor control. Thus, OMA1 inactivation increased the development of anti-tumor immunity. Patients with complex genomic soft tissue sarcoma showed variations in the level of OMA1 and OPA1 transcripts. High expression of OPA1 in primary tumors was associated with shorter metastasis-free survival after surgery, and low expression of OPA1, with anti-tumor immune signatures. Targeting OMA1 activity may enhance sarcoma immunogenicity.

Funder

Institut National Du Cancer

Canceropôle PACA

Agence Nationale de la Recherche

Publisher

Life Science Alliance, LLC

Subject

Health, Toxicology and Mutagenesis,Plant Science,Biochemistry, Genetics and Molecular Biology (miscellaneous),Ecology

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