Homozygous MFN2 variants causing severe antenatal encephalopathy with clumped mitochondria

Author:

Chevrollier Arnaud1,Bonnard Adeline Alice23,Ruaud Lyse24,Gueguen Naïg15,Perrin Laurence2,Desquiret-Dumas Valérie15,Guimiot Fabien46,Becker Pierre-Hadrien78,Levy Jonathan27,Reynier Pascal15ORCID,Gaignard Pauline78

Affiliation:

1. MitoVasc Unit, INSERM U1083, CNRS 6015, SFR-ICAT, Angers University, MitoLab Team , 49000 Angers , France

2. Department of Genetics, APHP Nord, Robert Debré University Hospital , 75019 Paris , France

3. INSERM UMR 1131, Saint-Louis Research Institute, Paris University , 75010 Paris , France

4. INSERM UMR 1141, Paris-Cité University , NeuroDiderot, 75019 Paris , France

5. Department of Biochemistry and Molecular biology, Angers University Hospital , 49000 Angers , France

6. Genetic department, CHU Robert Debre, Fetal Pathology Unit , 75019 Paris , France

7. Multi-site medical biology laboratory SeqOIA—FMG2025 , 75014 Paris , France

8. APHP Paris-Saclay, Department of Biochemistry, Reference Center for Mitochondrial Disease, FILNEMUS, Bicêtre University Hospital , 94275 Le Kremlin-Bicêtre , France

Abstract

Abstract Pathogenic variants in the MFN2 gene are commonly associated with autosomal dominant (CMT2A2A) or recessive (CMT2A2B) Charcot-Marie-Tooth disease, with possible involvement of the CNS. Here, we present a case of severe antenatal encephalopathy with lissencephaly, polymicrogyria and cerebellar atrophy. Whole genome analysis revealed a homozygous deletion c.1717-274_1734 del (NM_014874.4) in the MFN2 gene, leading to exon 16 skipping and in-frame loss of 50 amino acids (p.Gln574_Val624del), removing the proline-rich domain and the transmembrane domain 1 (TM1). MFN2 is a transmembrane GTPase located on the mitochondrial outer membrane that contributes to mitochondrial fusion, shaping large mitochondrial networks within cells. In silico modelling showed that the loss of the TM1 domain resulted in a drastically altered topological insertion of the protein in the mitochondrial outer membrane. Fetus fibroblasts, investigated by fluorescent cell imaging, electron microscopy and time-lapse recording, showed a sharp alteration of the mitochondrial network, with clumped mitochondria and clusters of tethered mitochondria unable to fuse. Multiple deficiencies of respiratory chain complexes with severe impairment of complex I were also evidenced in patient fibroblasts, without involvement of mitochondrial DNA instability. This is the first reported case of a severe developmental defect due to MFN2 deficiency with clumped mitochondria.

Publisher

Oxford University Press (OUP)

Subject

Neurology (clinical)

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