Guanylate Kinase 1 Deficiency: A Novel and Potentially Treatable Mitochondrial DNA Depletion/Deletions Disease

Author:

Hidalgo‐Gutierrez Agustin1ORCID,Shintaku Jonathan1ORCID,Ramon Javier23ORCID,Barriocanal‐Casado Eliana1ORCID,Pesini Alba1ORCID,Saneto Russell P.4ORCID,Garrabou Gloria25ORCID,Milisenda Jose Cesar256ORCID,Matas‐Garcia Ana256,Gort Laura27ORCID,Ugarteburu Olatz27ORCID,Gu Yue8,Koganti Lahari8,Wang Tian9,Tadesse Saba1,Meneri Megi1011ORCID,Sciacco Monica12ORCID,Wang Shuang9ORCID,Tanji Kurenai8ORCID,Horwitz Marshall S.13ORCID,Dorschner Michael O.13,Mansukhani Mahesh8ORCID,Comi Giacomo Pietro1011ORCID,Ronchi Dario1011ORCID,Marti Ramon23ORCID,Ribes Antonia27ORCID,Tort Frederic27ORCID,Hirano Michio1ORCID

Affiliation:

1. Department of Neurology Columbia University Irving Medical Center New York NY

2. Biomedical Network Research Centre on Rare Diseases (CIBERER) Instituto de Salud Carlos III Madrid Spain

3. Vall d'Hebron Research Institute Autonomous University of Barcelona Barcelona Spain

4. Seattle Children's Hospital Seattle WA

5. Inherited Metabolic Diseases and Muscle Disorder's Lab, Cellex – IDIBAPS Faculty of Medicine and Health Science – University of Barcelona (UB) Barcelona Spain

6. Department of Internal Medicine Hospital Clínic of Barcelona Barcelona Spain

7. Section of Inborn Errors of Metabolism‐IBC, Department of Biochemistry and Molecular Genetics Hospital Clinic de Barcelona‐IDIBAPS Barcelona Spain

8. Department of Pathology and Cell Biology Columbia University Irving Medical Center New York NY

9. Department of Biostatistics, Mailman School of Public Health Columbia University New York NY

10. Dino Ferrari Center, Department of Pathophysiology and Transplantation University of Milan Milan Italy

11. IRCCS Fondazione Ca’ Granda Ospedale Maggiore Policlinico Neurology Unit Milan Italy

12. IRCCS Fondazione Ca’ Granda Ospedale Maggiore Policlinico Neuromuscular and Rare Disease Unit Milan Italy

13. Department of Laboratory Medicine and Pathology University of Washington Seattle WA

Abstract

ObjectiveMitochondrial DNA (mtDNA) depletion/deletions syndrome (MDDS) comprises a group of diseases caused by primary autosomal defects of mtDNA maintenance. Our objective was to study the etiology of MDDS in 4 patients who lack pathogenic variants in known genetic causes.MethodsWhole exome sequencing of the probands was performed to identify pathogenic variants. We validated the mitochondrial defect by analyzing mtDNA, mitochondrial dNTP pools, respiratory chain activities, and GUK1 activity. To confirm pathogenicity of GUK1 deficiency, we expressed 2 GUK1 isoforms in patient cells.ResultsWe identified biallelic GUK1 pathogenic variants in all 4 probands who presented with ptosis, ophthalmoparesis, and myopathic proximal limb weakness, as well as variable hepatopathy and altered T‐lymphocyte profiles. Muscle biopsies from all probands showed mtDNA depletion, deletions, or both, as well as reduced activities of mitochondrial respiratory chain enzymes. GUK1 encodes guanylate kinase, originally identified as a cytosolic enzyme. Long and short isoforms of GUK1 exist. We observed that the long isoform is intramitochondrial and the short is cytosolic. In probands’ fibroblasts, we noted decreased GUK1 activity causing unbalanced mitochondrial dNTP pools and mtDNA depletion in both replicating and quiescent fibroblasts indicating that GUK1 deficiency impairs de novo and salvage nucleotide pathways. Proband fibroblasts treated with deoxyguanosine and/or forodesine, a purine phosphatase inhibitor, ameliorated mtDNA depletion, indicating potential pharmacological therapies.InterpretationPrimary GUK1 deficiency is a new and potentially treatable cause of MDDS. The cytosolic isoform of GUK1 may contribute to the T‐lymphocyte abnormality, which has not been observed in other MDDS disorders. ANN NEUROL 2024

Funder

Fundación Alfonso Martín Escudero

Agència de Gestió d'Ajuts Universitaris i de Recerca

Dipartimenti di Eccellenza

Instituto de Salud Carlos III

European Regional Development Fund

Fondazione IRCCS Ca' Granda Ospedale Maggiore Policlinico

Congressionally Directed Medical Research Programs

Publisher

Wiley

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