AI Article Synopsis

  • Pathogenic mitochondrial DNA (mtDNA) variants are a frequent cause of mitochondrial diseases in adults, and their levels in blood decrease with age due to different metabolic needs among blood cell types.* -
  • A study involving cell-sorting and mtDNA sequencing found that T cells show a greater decline in these variants compared to other blood cells, driven by their ability to eliminate mutated mtDNA as they differentiate.* -
  • Compared to healthy controls, patients with these mtDNA variants have fewer T cells, highlighting the importance of mitochondrial function for maintaining T cell levels and differentiation status in the blood.*

Article Abstract

Pathogenic mitochondrial DNA (mtDNA) single-nucleotide variants are a common cause of adult mitochondrial disease. Levels of some variants decrease with age in blood. Given differing division rates, longevity, and energetic requirements within haematopoietic lineages, we hypothesised that cell-type-specific metabolic requirements drive this decline. We coupled cell-sorting with mtDNA sequencing to investigate mtDNA variant levels within progenitor, myeloid, and lymphoid lineages from 26 individuals harbouring one of two pathogenic mtDNA variants (m.3243A>G and m.8344A>G). For both variants, cells of the T cell lineage show an enhanced decline. High-throughput single-cell analysis revealed that decline is driven by increasing proportions of cells that have cleared the variant, following a hierarchy that follows the current orthodoxy of T cell differentiation and maturation. Furthermore, patients with pathogenic mtDNA variants have a lower proportion of T cells than controls, indicating a key role for mitochondrial function in T cell homeostasis. This work identifies the ability of T cell subtypes to selectively purify their mitochondrial genomes, and identifies pathogenic mtDNA variants as a new means to track blood cell differentiation status.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10471888PMC
http://dx.doi.org/10.26508/lsa.202302271DOI Listing

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