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Single-fiber studies for assigning pathogenicity of eight mitochondrial DNA variants associated with mitochondrial diseases. | LitMetric

AI Article Synopsis

  • - Whole mitochondrial DNA sequencing is now routinely used in clinical labs to identify mitochondrial disease in patients, aided by Next Generation Sequencing, which has revealed many new mtDNA variants.
  • - Alongside an increase in identified pathogenic variants, there has also been a rise in variants of unknown significance (VUS), complicating their interpretation for patient treatment and counseling.
  • - The study characterized eight heteroplasmic mtDNA variants, classifying some as "definitely pathogenic," while others remain "possibly pathogenic," showcasing the importance of single fiber studies in diagnosing low-level heteroplasmy cases.

Article Abstract

Whole mitochondrial DNA (mtDNA) sequencing is now systematically used in clinical laboratories to screen patients with a phenotype suggestive of mitochondrial disease. Next Generation Sequencing (NGS) has significantly increased the number of identified pathogenic mtDNA variants. Simultaneously, the number of variants of unknown significance (VUS) has increased even more, thus challenging their interpretation. Correct classification of the variants' pathogenicity is essential for optimal patient management, including treatment and genetic counseling. Here, we used single muscle fiber studies to characterize eight heteroplasmic mtDNA variants, among which were three novel variants. By applying the pathogenicity scoring system, we classified four variants as "definitely pathogenic" (m.590A>G, m.9166T>C, m.12293G>A, and m.15958A>T). Two variants remain "possibly pathogenic" (m.4327T>C and m.5672T>C) but should these be reported in a different family, they would be reclassified as "definitely pathogenic." We also illustrate the contribution of single-fiber studies to the diagnostic approach in patients harboring pathogenic variants with low level heteroplasmy.

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Source
http://dx.doi.org/10.1002/humu.24037DOI Listing

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