Neuropathological hallmarks in autopsied cases with mitochondrial diseases caused by the mitochondrial 3243A>G

Hiroaki Miyahara1, Chisato Tamai1, Masanori Inoue2

  • 1Department of Neuropathology, Institute for Medical Research of Aging, Aichi Medical University, Aichi, Japan.

Insights

The mitochondrial 3243A>G mutation causes high mtDNA heteroplasmy and OXPHOS complex I decrease in the brain, leading to varied lesions but sparing the medial temporal lobe. These findings aid in diagnosing mitochondrial diseases.

Area of Science:

  • Neurology
  • Mitochondrial Biology
  • Genetics

Background:

  • The mitochondrial 3243A>G mutation is linked to MELAS and other mitochondrial diseases.
  • Clinical symptoms correlate with mtDNA heteroplasmy and reduced oxidative phosphorylation (OXPHOS), but central nervous system trends are unclear.

Purpose of the Study:

  • To investigate neuropathological changes and mtDNA heteroplasmy distribution in the brain in cases with the mitochondrial 3243A>G mutation.
  • To identify potential diagnostic hallmarks for mitochondrial diseases.

Main Methods:

  • Autopsy brain tissue analysis from six mutant cases and three controls.
  • Quantification of mtDNA heteroplasmy.
  • Assessment of OXPHOS complex activity.
  • Histopathological examination including immunohistochemistry.

Main Results:

  • High mtDNA heteroplasmy (53.8–85.2%) found throughout the brain, with heterogeneous cortical lesions (frequent in parietal, temporal, occipital lobes; rare in frontal; absent in medial temporal).
  • Reduced OXPHOS complex I activity observed in mutant cases.
  • Mitochondrial vasculopathy in leptomeningeal vessels and altered choroidal epithelial cells noted in all mutant cases.
  • Medial temporal lobe spared despite high heteroplasmy and lactic acid.

Conclusions:

  • High brain-wide mtDNA heteroplasmy and specific neuropathological features, including medial temporal lobe sparing and mitochondrial vasculopathy, are key indicators for diagnosing mitochondrial diseases.
  • Neuropathological findings may not always align with common presentations like cortical laminar necrosis or basal ganglia calcification.