Mitofusin 2 mutation drives cell proliferation in Charcot-Marie-Tooth 2A fibroblasts

Author:

Zanfardino Paola12,Longo Giovanna12,Amati Alessandro12,Morani Federica3,Picardi Ernesto456ORCID,Girolamo Francesco12,Pafundi Mariella12,Cox Sharon N45,Manzari Caterina45,Tullo Apollonia6,Doccini Stefano7,Santorelli Filippo M7,Petruzzella Vittoria12ORCID

Affiliation:

1. Department of Medical Basic Sciences , Neurosciences and Sense Organs, , 70124 Bari , Italy

2. University of Bari Aldo Moro , Neurosciences and Sense Organs, , 70124 Bari , Italy

3. Department of Biology, University of Pisa , 56126 Pisa , Italy

4. Department of Biosciences , Biotechnology and Biopharmaceutics, , 70125 Bari , Italy

5. University of Bari , Biotechnology and Biopharmaceutics, , 70125 Bari , Italy

6. Institute of Biomembranes, Bioenergetics and Molecular Biotechnologies, National Research Council , 70125 Bari , Italy

7. Molecular Medicine for Neurodegenerative and Neuromuscular Diseases Unit, IRCCS Fondazione Stella Maris , 56128 Pisa , Italy

Abstract

Abstract Dominant mutations in ubiquitously expressed mitofusin 2 gene (MFN2) cause Charcot-Marie-Tooth type 2A (CMT2A; OMIM 609260), an inherited sensory-motor neuropathy that affects peripheral nerve axons. Mitofusin 2 protein has been found to take part in mitochondrial fusion, mitochondria–endoplasmic reticulum tethering, mitochondrial trafficking along axons, mitochondrial quality control and various types of cancer, in which MFN2 has been indicated as a tumor suppressor gene. Discordant data on the mitochondrial altered phenotypes in patient-derived fibroblasts harboring MFN2 mutations and in animal models have been reported. We addressed some of these issues by focusing on mitochondria behavior during autophagy and mitophagy in fibroblasts derived from a CMT2AMFN2 patient with an MFN2650G > T/C217F mutation in the GTPase domain. This study investigated mitochondrial dynamics, respiratory capacity and autophagy/mitophagy, to tackle the multifaceted MFN2 contribution to CMT2A pathogenesis. We found that MFN2 mutated fibroblasts showed impairment of mitochondrial morphology, bioenergetics capacity, and impairment of the early stages of autophagy, but not mitophagy. Unexpectedly, transcriptomic analysis of mutated fibroblasts highlighted marked differentially expressed pathways related to cell population proliferation and extracellular matrix organization. We consistently found the activation of mTORC2/AKT signaling and accelerated proliferation in the CMT2AMFN2 fibroblasts. In conclusion, our evidence indicates that MFN2 mutation can positively drive cell proliferation in CMT2AMFN2 fibroblasts.

Funder

REGIONE PUGLIA-MALATTIE RARE-Petruzzella

UILDM and CollaGe

Opera Pia Foundation

Italian Ministry of Health-Ricerca Corrente

Publisher

Oxford University Press (OUP)

Subject

Genetics (clinical),Genetics,Molecular Biology,General Medicine

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