» Articles » PMID: 37255483

Expert Panel Curation of 113 Primary Mitochondrial Disease Genes for the Leigh Syndrome Spectrum

Overview
Journal Ann Neurol
Specialty Neurology
Date 2023 May 31
PMID 37255483
Authors
Affiliations
Soon will be listed here.
Abstract

Objective: Primary mitochondrial diseases (PMDs) are heterogeneous disorders caused by inherited mitochondrial dysfunction. Classically defined neuropathologically as subacute necrotizing encephalomyelopathy, Leigh syndrome spectrum (LSS) is the most frequent manifestation of PMD in children, but may also present in adults. A major challenge for accurate diagnosis of LSS in the genomic medicine era is establishing gene-disease relationships (GDRs) for this syndrome with >100 monogenic causes across both nuclear and mitochondrial genomes.

Methods: The Clinical Genome Resource (ClinGen) Mitochondrial Disease Gene Curation Expert Panel (GCEP), comprising 40 international PMD experts, met monthly for 4 years to review GDRs for LSS. The GCEP standardized gene curation for LSS by refining the phenotypic definition, modifying the ClinGen Gene-Disease Clinical Validity Curation Framework to improve interpretation for LSS, and establishing a scoring rubric for LSS.

Results: The GDR with LSS across the nuclear and mitochondrial genomes was classified as definitive for 31 of 114 GDRs curated (27%), moderate for 38 (33%), limited for 43 (38%), and disputed for 2 (2%). Ninety genes were associated with autosomal recessive inheritance, 16 were maternally inherited, 5 were autosomal dominant, and 3 were X-linked.

Interpretation: GDRs for LSS were established for genes across both nuclear and mitochondrial genomes. Establishing these GDRs will allow accurate variant interpretation, expedite genetic diagnosis of LSS, and facilitate precision medicine, multisystem organ surveillance, recurrence risk counseling, reproductive choice, natural history studies, and determination of eligibility for interventional clinical trials. ANN NEUROL 2023;94:696-712.

Citing Articles

Complex I deficiency remains the most frequent cause of Leigh syndrome spectrum.

Rahman S Brain Commun. 2025; 7(1):fcae470.

PMID: 39816196 PMC: 11733768. DOI: 10.1093/braincomms/fcae470.


MMFP-Tableau: enabling precision mitochondrial medicine through integration, visualization, and analytics of clinical and research health system electronic data.

George-Sankoh I, MacMullen L, Chinwalla A, Taylor D, Ganetzky R, Stanley K JAMIA Open. 2024; 7(4):ooae134.

PMID: 39559492 PMC: 11570990. DOI: 10.1093/jamiaopen/ooae134.


A Comprehensive Approach to the Diagnosis of Leigh Syndrome Spectrum.

Baldo M, Azevedo L, Coelho M, Martins E, Vilarinho L Diagnostics (Basel). 2024; 14(19).

PMID: 39410537 PMC: 11475613. DOI: 10.3390/diagnostics14192133.


New Insights into Mitochondria in Health and Diseases.

Li Y, Zhang H, Yu C, Dong X, Yang F, Wang M Int J Mol Sci. 2024; 25(18).

PMID: 39337461 PMC: 11432609. DOI: 10.3390/ijms25189975.


Mitochondria transfer-based therapies reduce the morbidity and mortality of Leigh syndrome.

Nakai R, Varnum S, Field R, Shi H, Giwa R, Jia W Nat Metab. 2024; 6(10):1886-1896.

PMID: 39223312 DOI: 10.1038/s42255-024-01125-5.


References
1.
Falk M, Shen L, Gai X . From case studies to community knowledge base: MSeqDR provides a platform for the curation and genomic analysis of mitochondrial diseases. Cold Spring Harb Mol Case Stud. 2016; 2(3):a001065. PMC: 4853518. DOI: 10.1101/mcs.a001065. View

2.
Alves C, Teixeira S, Martin-Saavedra J, Goncalves F, Lo Russo F, Muraresku C . Pediatric Leigh Syndrome: Neuroimaging Features and Genetic Correlations. Ann Neurol. 2020; 88(2):218-232. DOI: 10.1002/ana.25789. View

3.
Thaxton C, Good M, DiStefano M, Luo X, Andersen E, Thorland E . Utilizing ClinGen gene-disease validity and dosage sensitivity curations to inform variant classification. Hum Mutat. 2021; 43(8):1031-1040. PMC: 9035475. DOI: 10.1002/humu.24291. View

4.
Shen L, Diroma M, Gonzalez M, Navarro-Gomez D, Leipzig J, Lott M . MSeqDR: A Centralized Knowledge Repository and Bioinformatics Web Resource to Facilitate Genomic Investigations in Mitochondrial Disease. Hum Mutat. 2016; 37(6):540-548. PMC: 4846568. DOI: 10.1002/humu.22974. View

5.
Duchesne A, Vaiman A, Castille J, Beauvallet C, Gaignard P, Floriot S . Bovine and murine models highlight novel roles for SLC25A46 in mitochondrial dynamics and metabolism, with implications for human and animal health. PLoS Genet. 2017; 13(4):e1006597. PMC: 5380314. DOI: 10.1371/journal.pgen.1006597. View