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Nature Communications|October 17, 2018
High prevalence of focal and multi-focal somatic genetic variants in the human brainMichael J Keogh, Wei Wei, Juvid Aryaman, et al.Journal of Neurology, Neurosurgery, and Psychiatry|January 15, 2018
Oligogenic genetic variation of neurodegenerative disease genes in 980 postmortem human brainsMichael J Keogh, Wei Wei, Juvid Aryaman, et al.Neurobiology of Aging|January 7, 2012
Tau acts as an independent genetic risk factor in pathologically proven PDGavin Charlesworth, Sonia Gandhi, Jose M Bras, et al.Movement Disorders : Official Journal of the Movement Disorder Society|November 22, 2011
Genetic and pathological links between Parkinson's disease and the lysosomal disorder Sanfilippo syndromeSophie E Winder-Rhodes, Pablo Garcia-Reitböck, Maria Ban, et al.EMBO Molecular Medicine|February 29, 2020
Metabolic effects of bezafibrate in mitochondrial diseaseHannah Steele, Aurora Gomez-Duran, Angela Pyle, et al.Genome Research|October 27, 2010
OPA1 links human mitochondrial genome maintenance to mtDNA replication and distributionGhizlane Elachouri, Sara Vidoni, Claudia Zanna, et al.Plos Genetics|April 1, 2022
Heteroplasmic mitochondrial DNA variants in cardiovascular diseasesClaudia Calabrese, Angela Pyle, Helen Griffin, et al.Plos One|December 29, 2012
Non-random mtDNA segregation patterns indicate a metastable heteroplasmic segregation unit in m.3243A>G cybrid cellsAnton K Raap, Roshan S Jahangir Tafrechi, Frans M van de Rijke, et al.Nature Metabolism|February 19, 2025
Pro-inflammatory macrophages produce mitochondria-derived superoxide by reverse electron transport at complex I that regulates IL-1β release during NLRP3 inflammasome activationAlva M Casey, Dylan G Ryan, Hiran A Prag, et al.Nature Communications|July 25, 2019
Mitochondrially-targeted APOBEC1 is a potent mtDNA mutator affecting mitochondrial function and organismal fitness in DrosophilaSimonetta Andreazza, Colby L Samstag, Alvaro Sanchez-Martinez, et al.Pageof 37