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Updated: May 7, 2026

An Improved Method to Isolate Mitochondrial Contact Sites
Published on: June 16, 2023
Mitochondrial haplotypes associated with biomarkers for Alzheimer's disease
Perry G Ridge1, Andre Koop, Taylor J Maxwell
1Department of Biology, Brigham Young University, Provo, Utah, United States of America ; ARUP Institute for Clinical and Experimental Pathology, Salt Lake City, Utah, United States of America.
Abstract:
Various studies have suggested that the mitochondrial genome plays a role in late-onset Alzheimer's disease, although results are mixed. We used an endophenotype-based approach to further characterize mitochondrial genetic variation and its relationship to risk markers for Alzheimer's disease. We analyzed longitudinal data from non-demented, mild cognitive impairment, and late-onset Alzheimer's disease participants in the Alzheimer's Disease Neuroimaging Initiative with genetic, brain imaging, and behavioral data. We assessed the relationship of structural MRI and cognitive biomarkers with mitochondrial genome variation using TreeScanning, a haplotype-based approach that concentrates statistical power by analyzing evolutionarily meaningful groups (or clades) of haplotypes together for association with a phenotype. Four clades were associated with three different endophenotypes: whole brain volume, percent change in temporal pole thickness, and left hippocampal atrophy over two years. This is the first study of its kind to identify mitochondrial variation associated with brain imaging endophenotypes of Alzheimer's disease. Our results provide additional evidence that the mitochondrial genome plays a role in risk for Alzheimer's disease.
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