Pathogenic variants in GCSH encoding the moonlighting H-protein cause combined nonketotic hyperglycinemia and lipoate deficiency

Author:

Arribas-Carreira Laura1,Dallabona Cristina2,Swanson Michael A3,Farris Joseph45,Østergaard Elsebet6,Tsiakas Konstantinos7,Hempel Maja8,Aquaviva-Bourdain Cecile9,Koutsoukos Stefanos3,Stence Nicholas V10,Magistrati Martina11,Spector Elaine B312,Kronquist Kathryn312,Christensen Mette13,Karstensen Helena G13,Feichtinger René G14,Achleitner Melanie T14,Lawrence Merritt II J15,Pérez Belén16,Ugarte Magdalena16,Grünewald Stephanie17,Riela Anthony R18,Julve Natalia19,Arnoux Jean-Baptiste20,Haldar Kasturi4,Donnini Claudia11,Santer René7,Lund Allan M13,Mayr Johannes A14,Rodriguez-Pombo Pilar1,Van Hove Johan L K3

Affiliation:

1. Institute for Molecular Biology-IUBM, Universidad Autónoma Madrid, CIBERER, IDIPAZ Centro de Diagnóstico de Enfermedades Moleculares, Centro de Biología Molecular Severo Ochoa, CBM-CSIC, Departamento de Biología Molecular, , 28049 Madrid , Spain

2. University of Parma Department of Chemistry, Life Sciences and Environmental Sustainability, , Parma , Italy

3. University of Colorado Department of Pediatrics, Section of Clinical Genetics and Metabolism, , Aurora, CO , USA

4. University of Notre Dame Boler-Parseghian Center for Rare and Neglected Disease, and Department of Biological Sciences, , Notre Dame, IN , USA

5. Saginaw Valley State University Department of Biology, , University Center, MI , USA

6. Rigshospitalet - Copenhagen University Hospital Centre for Inherited Metabolic Diseases, Departments of Clinical Genetics and Pediatrics, , Copenhagen , Denmark

7. University Medical Center Hamburg Eppendorf Department of Pediatrics, , Hamburg, Germany

8. University Medical Center Hamburg Eppendorf Institute of Human Genetics, , Hamburg, Germany

9. Centre de Biologie Est, CHU de Lyon Service Biochimie et Biologie Moléculaire, UM Pathologies Héréditaires du Métabolisme et du Globule Rouge, , Lyon, France

10. University of Colorado Department of Radiology, , Aurora, CO , USA

11. University of Parma Department of Chemistry, Life Sciences and Environmental Sustainability, , Parma, Italy

12. Children's Hospital Colorado Molecular Genetics Lab, Precision DX, , Aurora, CO , USA

13. Rigshospitalet - Copenhagen University Hospital Centre for Inherited Metabolic Diseases, Departments of Clinical Genetics and Pediatrics, , Copenhagen, Denmark

14. University Children’s Hospital, Salzburger Landeskliniken (SALK) and Paracelsus Medical University (PMU) , Salzburg, Austria

15. University of Washington Department of Pediatrics, , Seattle, WA , USA

16. Institute for Molecular Biology-IUBM, Universidad Autónoma Madrid, CIBERER, IDIPAZ Centro de Diagnóstico de Enfermedades Moleculares, Centro de Biología Molecular Severo Ochoa, CBM-CSIC, Departamento de Biología Molecular, , 28049 Madrid, Spain

17. Great Ormond Street Hospital Department of Metabolic Medicine, , London, UK

18. Texas Child Neurology , Plano, TX , USA

19. IMED Valencia Hospital Department of Pediatrics, , Valencia, Spain

20. Necker Enfants Malades Centre de Reference des Maladies Hereditaires, , Paris, France

Abstract

Abstract Maintaining protein lipoylation is vital for cell metabolism. The H-protein encoded by GCSH has a dual role in protein lipoylation required for bioenergetic enzymes including pyruvate dehydrogenase and 2-ketoglutarate dehydrogenase, and in the one-carbon metabolism through its involvement in glycine cleavage enzyme system, intersecting two vital roles for cell survival. Here, we report six patients with biallelic pathogenic variants in GCSH and a broad clinical spectrum ranging from neonatal fatal glycine encephalopathy to an attenuated phenotype of developmental delay, behavioral problems, limited epilepsy and variable movement problems. The mutational spectrum includes one insertion c.293-2_293–1insT, one deletion c.122_(228 + 1_229–1) del, one duplication of exons 4 and 5, one nonsense variant p.Gln76*and four missense p.His57Arg, p.Pro115Leu and p.Thr148Pro and the previously described p.Met1?. Via functional studies in patient’s fibroblasts, molecular modeling, expression analysis in GCSH knockdown COS7 cells and yeast, and in vitro protein studies, we demonstrate for the first time that most variants identified in our cohort produced a hypomorphic effect on both mitochondrial activities, protein lipoylation and glycine metabolism, causing combined deficiency, whereas some missense variants affect primarily one function only. The clinical features of the patients reflect the impact of the GCSH changes on any of the two functions analyzed. Our analysis illustrates the complex interplay of functional and clinical impact when pathogenic variants affect a multifunctional protein involved in two metabolic pathways and emphasizes the value of the functional assays to select the treatment and investigate new personalized options.

Funder

Fundación Ramón Areces

Federal Ministry for Education, Science, Research and Technology

Consejería de Educación, Juventud y Deporte, Comunidad de Madrid

European Regional Development Fund

Instituto de Salud Carlos III

Austrian Science Fund

Publisher

Oxford University Press (OUP)

Subject

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

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4. Lipoic acid synthesis and attachment in yeast mitochondria;Schonauer;J. Biol. Chem.,2009

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