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March 6, 2026Acta Neuropathologica2 citationsOpen Access

Association of mitochondrial genetic background with pS65-Ub in Lewy body disease

NTNgan TranMayo Clinic in ArizonaXHXu HouHarbin Medical UniversityMHMichael G. HeckmanJacksonville College

Key Points

  • To explore the relationship between mitochondrial DNA variations and the mitophagy marker pS65-Ub in Lewy body disease.
  • Examined mitochondrial DNA variation in 514 neuropathologically confirmed Lewy body disease brains.
  • Conducted independent replication in an additional cohort of 384 LBD brains.
  • Conducted genome-wide association studies to assess pS65-Ub levels.
  • No significant association found between individual mtDNA haplogroups and pS65-Ub after correction for multiple testing.
  • mtDNA haplogroup V showed a nominal significance but was not replicable in the independent cohort.
  • Overall findings suggest mtDNA variations alone do not explain mitochondrial damage in Lewy body disease.

Abstract

Mitochondrial dysfunction is a hallmark of neurodegenerative diseases, where respiratory defects and downstream bioenergetic failures arise from impaired mitophagy or the accumulation of damaged mitochondria. Mitophagy is a mitochondrial quality-control pathway in which mitochondria tagged with ubiquitin phosphorylated at Serine 65 (pS65-Ub) are targeted for degradation via the autophagy-lysosome system. We previously identified a significant genome-wide association between apolipoprotein E ε4 APOE ε4 with pS65-Ub levels in the hippocampus of Lewy body disease (LBD). However, the relationship between genetic background in the mitochondrial genome and the PINK1-PRKN pathway biomarker pS65-Ub remains to be elucidated. In this study, we examined whether mitochondrial DNA (mtDNA) variation contributes to changes in pS65-Ub level in 514 neuropathologically confirmed LBD brains, with replication in an independent cohort of 384 LBD brains. No individual mtDNA haplogroup was significantly associated with pS65-Ub levels after correction for multiple testing (P < 0.005 considered significant); mtDNA haplogroup V exhibited a nominally significant (P < 0.05) association, but this association was not observed in an independent replication series. Our data reveal an overall lack of direct evidence linking mtDNA variations to mitophagy marker pS65-Ub levels in LBD, suggesting that mitochondrial damage is unlikely to be explained by major mtDNA determinants alone and may instead reflect cumulative and multilayered perturbations of mitochondrial function. Single cell analyses combined with larger replication cohorts integrating multi-omics datasets will be essential to validate these findings and to advance the discovery of biomarkers for mitochondrial dysfunction in neurodegeneration.

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Cite This Study

Tran et al. (2026) studied this question.

synapsesocial.com/papers/69aa6ee2531e4c4a9ff58ffehttps://doi.org/10.1007/s00401-026-02993-9
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