De Novo DNM1L Mutation in a Patient with Encephalopathy, Cardiomyopathy and Fatal Non-Epileptic Paroxysmal Refractory Vomiting

Author:

Berti Beatrice1,Verrigni Daniela2,Nasca Alessia3ORCID,Di Nottia Michela45,Leone Daniela1,Torraco Alessandra4ORCID,Rizza Teresa4,Bellacchio Emanuele6ORCID,Legati Andrea3,Palermo Concetta1,Marchet Silvia3,Lamperti Costanza3,Novelli Antonio2ORCID,Mercuri Eugenio Maria17,Bertini Enrico Silvio5ORCID,Pane Marika17,Ghezzi Daniele38ORCID,Carrozzo Rosalba4ORCID

Affiliation:

1. Centro Clinico Nemo and Pediatric Neurology Unit, Fondazione Policlinico Universitario A. Gemelli IRCCS, Largo Agostino Gemelli, 8, 00168 Rome, Italy

2. Translational Cytogenomics Research Unit, Bambino Gesù Children’s Hospital, IRCCS, 00165 Rome, Italy

3. Unit of Medical Genetics and Neurogenetics, Fondazione IRCCS Istituto Neurologico Carlo Besta, 20126 Milan, Italy

4. Unit of Cell Biology and Diagnosis of Mitochondrial Disorders, Laboratory of Medical Genetics, Bambino Gesù Children’s Hospital IRCCS, 00146 Rome, Italy

5. Neuromuscular Disorders Research Unit, Bambino Gesù Children’s Hospital IRCCS, 00165 Rome, Italy

6. Molecular Genetics and Functional Genomics, Bambino Gesù Children’s Hospital, IRCCS, 00165 Rome, Italy

7. Pediatric Neurology Unit, Università Cattolica del Sacro Cuore, Largo Francesco Vito, 1, 00168 Rome, Italy

8. Department of Pathophysiology and Transplantation, University of Milan, 20122 Milan, Italy

Abstract

Mitochondrial fission and fusion are vital dynamic processes for mitochondrial quality control and for the maintenance of cellular respiration; they also play an important role in the formation and maintenance of cells with high energy demand including cardiomyocytes and neurons. The DNM1L (dynamin-1 like) gene encodes for the DRP1 protein, an evolutionary conserved member of the dynamin family that is responsible for the fission of mitochondria; it is ubiquitous but highly expressed in the developing neonatal heart. De novo heterozygous pathogenic variants in the DNM1L gene have been previously reported to be associated with neonatal or infantile-onset encephalopathy characterized by hypotonia, developmental delay and refractory epilepsy. However, cardiac involvement has been previously reported only in one case. Next-Generation Sequencing (NGS) was used to genetically assess a baby girl characterized by developmental delay with spastic–dystonic, tetraparesis and hypertrophic cardiomyopathy of the left ventricle. Histochemical analysis and spectrophotometric determination of electron transport chain were performed to characterize the muscle biopsy; moreover, the morphology of mitochondria and peroxisomes was evaluated in cultured fibroblasts as well. Herein, we expand the phenotype of DNM1L-related disorder, describing the case of a girl with a heterozygous mutation in DNM1L and affected by progressive infantile encephalopathy, with cardiomyopathy and fatal paroxysmal vomiting correlated with bulbar transitory abnormal T2 hyperintensities and diffusion-weighted imaging (DWI) restriction areas, but without epilepsy. In patients with DNM1L mutations, careful evaluation for cardiac involvement is recommended.

Funder

Italian Ministry of Health Ricerca Corrente

Italian Ministry of Health Ricerca Finalizzata

E-Rare project GENOMIT

Foundation “Pierfranco e Luisa Mariani”

The “Cell line and DNA Bank of Genetic Movement Disorders and Mitochondrial Diseases” of the Telethon Network of Genetic Biobanks

EuroBioBank Network

Publisher

MDPI AG

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