Mutant SPART causes defects in mitochondrial protein import and bioenergetics reversed by Coenzyme Q

Author:

Diquigiovanni Chiara123ORCID,Rizzardi Nicola4,Kampmeier Antje5,Liparulo Irene4,Bianco Francesca16,De Nicolo Bianca13,Cataldi-Stagetti Erica13,Cuna Elisabetta4ORCID,Severi Giulia3,Seri Marco3,Bertrand Miriam7,Haack Tobias B.78,Marina Adela Della9,Braun Frederik9,Fato Romana4,Kuechler Alma5,Bergamini Christian4,Bonora Elena13

Affiliation:

1. Department of Medical and Surgical Sciences, University of Bologna, Bologna 40138, Italy

2. Center for Applied Biomedical Research (CRBA), University of Bologna, Bologna 40138, Italy

3. IRCCS Azienda Ospedaliero-Universitaria di Bologna, Bologna 40138, Italy

4. Department of Pharmacy and Biotechnology, University of Bologna, Bologna 40126, Italy

5. Institut für Humangenetik, Universitätsklinikum Essen, Universität Duisburg-Essen, Essen 45122, Germany

6. Department of Veterinary Sciences, University of Bologna, Bologna 40064, Italy

7. Institute of Medical Genetics and Applied Genomics, University of Tübingen, Tübingen 72076, Germany

8. Center for Rare Diseases, University of Tübingen, Tübingen 72076, Germany

9. Department of Pediatric Neurology, Centre for Neuromuscular Disorders, Centre for Translational Neuro- and Behavioral Sciences, University Duisburg-Essen, Essen 45122, Germany

Abstract

Pathogenic variants in SPART cause Troyer syndrome, characterized by lower extremity spasticity and weakness, short stature and cognitive impairment, and a severe mitochondrial impairment. Herein, we report the identification of a role of Spartin in nuclear-encoded mitochondrial proteins. SPART biallelic missense variants were detected in a 5-year-old boy with short stature, developmental delay and muscle weakness with impaired walking distance. Patient-derived fibroblasts showed an altered mitochondrial network, decreased mitochondrial respiration, increased mitochondrial reactive oxygen species and altered Ca 2+ versus control cells. We investigated the mitochondrial import of nuclear-encoded proteins in these fibroblasts and in another cell model carrying a SPART loss-of-function mutation. In both cell models the mitochondrial import was impaired, leading to a significant decrease in different proteins, including two key enzymes involved in CoQ10 (CoQ) synthesis, COQ7 and COQ9, with a severe reduction in CoQ content, versus control cells. CoQ supplementation restored cellular ATP levels to the same extent shown by the re-expression of wild-type SPART, suggesting CoQ treatment as a promising therapeutic approach for patients carrying mutations in SPART .

Funder

PNNR

Fondazione Telethon

Fondazione Umberto Veronesi

Publisher

The Royal Society

Subject

General Biochemistry, Genetics and Molecular Biology,Immunology,General Neuroscience

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