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Association of Mitochondrial DNA Copy Number With Brain MRI Markers and Cognitive Function
- Zhang, Yuankai;
- Liu, Xue;
- Wiggins, Kerri L;
- Kurniansyah, Nuzulul;
- Guo, Xiuqing;
- Rodrigue, Amanda L;
- Zhao, Wei;
- Yanek, Lisa R;
- Ratliff, Scott M;
- Pitsillides, Achilleas;
- Aguirre Patiño, Juan Sebastian;
- Sofer, Tamar;
- Arking, Dan E;
- Austin, Thomas R;
- Beiser, Alexa S;
- Blangero, John;
- Boerwinkle, Eric;
- Bressler, Jan;
- Curran, Joanne E;
- Hou, Lifang;
- Hughes, Timothy M;
- Kardia, Sharon LR;
- Launer, Lenore J;
- Levy, Daniel;
- Mosley, Thomas H;
- Nasrallah, Ilya M;
- Rich, Stephen S;
- Rotter, Jerome I;
- Seshadri, Sudha;
- Tarraf, Wassim;
- González, Kevin A;
- Ramachandran, Vasan;
- Yaffe, Kristine;
- Nyquist, Paul A;
- Psaty, Bruce M;
- DeCarli, Charles S;
- Smith, Jennifer A;
- Glahn, David C;
- González, Hector M;
- Bis, Joshua C;
- Fornage, Myriam;
- Heckbert, Susan R;
- Fitzpatrick, Annette L;
- Liu, Chunyu;
- Satizabal, Claudia L;
- Aguilera, Norma;
- Ament, Seth;
- Ammous, Farah;
- Arnett, Donna K;
- Becker, Diane;
- Bis, Joshua;
- Blue, Elizabeth;
- Boerwinkle, Eric;
- Breaux, Camille;
- Bressler, Jan;
- Chaar, Dima;
- MHI;
- Clarkson-Townsend, Danielle;
- Cooper, Brigidann;
- Coresh, Josef;
- Correa, Adolfo;
- DeStefano, Anita;
- Ding, Jingzhong;
- Fardo, David;
- Fitzpatrick, Annette;
- Fornage, Myriam;
- French, Jennifer;
- Glahn, David;
- Gonzalez, Hector;
- Granot-Hershkovitz, Einat;
- Hanly, Patrick;
- Hayden, Kathleen;
- Heckbert, Susan;
- Heemann, Scott;
- Horvath, Steve;
- Hoth, Karin;
- Hughes, Timothy;
- Jaiswal, Sidd;
- Jian, Xueqiu;
- Katsumata, Yuriko;
- Kho, Minjung;
- Kooperberg, Charles;
- Launer, Lenore;
- Lin, Honghuang;
- Litkowski, Elizabeth;
- Longstreth, Will;
- Martin, Alexandra;
- Mayeux, Richard;
- Mikulla, Julie;
- Miller, Amy;
- Misra, Biswapriya;
- Mosley, Thomas;
- Nyquist, Paul;
- O'Connell, Jeff;
- Olivier, Michael;
- Peloso, Gina;
- Perry, James;
- Psaty, Bruce;
- Purcell, Shaun;
- Raffield, Laura;
- Ranaweera, Yugandi;
- Reiner, Alex;
- Rotter, Jerome;
- Sargurupremraj, Muralidharan;
- Sarnowski, Chloé;
- Satizabal, Claudia;
- Schellenberg, Gerard;
- Schoenbein, Bonnie L;
- Seshadri, Sudha;
- Shade, Lincoln;
- Short, Meghan I;
- Simino, Jeannette;
- Smith, Jennifer;
- Smith, Mallorie;
- Smoller, Sylvia;
- Snively, Beverly;
- Soemedi, Rachel;
- Sokolow, Sophie;
- Thorington, Daune;
- Thornton, Timothy A;
- Yanek, Lisa;
- Yang, Qiong;
- Yu, Miao;
- Zare, Habil;
- Zhao, Wei;
- Abecasis, Goncalo;
- Abhyankar, Avinash;
- Aldred, Micheala;
- Arking, Dan;
- Ashley-Koch, Allison;
- Aviv, Abraham;
- Barnes, Kathleen;
- Barron-Casella, Emily;
- Battle, Stephanie;
- Blackwell, Thomas;
- Burkardt, Deepika;
- Castellani, Christina A;
- Comhair, Suzy;
- Cooper, Brigidann;
- Correa, Adolfo;
- Crockett, Phyllis;
- de Andrade, Mariza;
- DeMeo, Dawn;
- DePaoli, Maria Rizzo;
- Ding, Jun;
- Dobski, Christine;
- Erzurum, Serpil;
- Farha, Samar;
- Fetterman, Jessica;
- Floyd, Caitlin;
- Fu, Mao;
- Gist, Amber;
- Granot-Hershkovitz, Einat;
- Gu, C Charles;
- Heemann, Scott;
- Hernandez, Ryan;
- Hong, Yun Soo;
- Hsu, Yi-Hsiang;
- Justice, Anne;
- Lange, Leslie;
- Levy, Dan;
- Lin, Honghuang;
- Liu, Chunyu;
- Longchamps, Ryan;
- Ma, Jiantao;
- Manson, JoAnn;
- Markus, Tammy;
- McDonald, Merry-Lynn;
- McGarvey, Stephen;
- Mikulla, Julie;
- Montgomery, Courtney;
- Musunuri, Rajeeva Lochan;
- O'Connell, Jeff;
- Oppong, Richard;
- Pankratz, Nathan;
- Qian, Yong;
- Rotter, Jerome;
- Shaw, Jessica R;
- Smith, Albert Vernon;
- Sofer, Tamar;
- Streeten, Elizabeth;
- Tang, Weihong;
- Taylor, Kent D;
- Telen, Marilyn;
- Thompson, Shelby;
- Thorington, Daune;
- Tiwari, Hemant;
- Walsh, Ann;
- Wan, Emily;
- Wang, Cuicui;
- Wang, Heming;
- Wang, Penglong;
- Weir, Bruce;
- Williams, L Keoki;
- Wilson, James;
- Xiao, Shujie;
- Xu, Weiling;
- Yang, Yu-Chung;
- Zhao, Wei
- et al.
Published Web Location
https://doi.org/10.1212/wnl.0000000000207157Abstract
Background and objectives
Previous studies suggest that lower mitochondrial DNA (mtDNA) copy number (CN) is associated with neurodegenerative diseases. However, whether mtDNA CN in whole blood is related to endophenotypes of Alzheimer disease (AD) and AD-related dementia (AD/ADRD) needs further investigation. We assessed the association of mtDNA CN with cognitive function and MRI measures in community-based samples of middle-aged to older adults.Methods
We included dementia-free participants from 9 diverse community-based cohorts with whole-genome sequencing in the Trans-Omics for Precision Medicine (TOPMed) program. Circulating mtDNA CN was estimated as twice the ratio of the average coverage of mtDNA to nuclear DNA. Brain MRI markers included total brain, hippocampal, and white matter hyperintensity volumes. General cognitive function was derived from distinct cognitive domains. We performed cohort-specific association analyses of mtDNA CN with AD/ADRD endophenotypes assessed within ±5 years (i.e., cross-sectional analyses) or 5-20 years after blood draw (i.e., prospective analyses) adjusting for potential confounders. We further explored associations stratified by sex and age (<60 vs ≥60 years). Fixed-effects or sample size-weighted meta-analyses were performed to combine results. Finally, we performed mendelian randomization (MR) analyses to assess causality.Results
We included up to 19,152 participants (mean age 59 years, 57% women). Higher mtDNA CN was cross-sectionally associated with better general cognitive function (β = 0.04; 95% CI 0.02-0.06) independent of age, sex, batch effects, race/ethnicity, time between blood draw and cognitive evaluation, cohort-specific variables, and education. Additional adjustment for blood cell counts or cardiometabolic traits led to slightly attenuated results. We observed similar significant associations with cognition in prospective analyses, although of reduced magnitude. We found no significant associations between mtDNA CN and brain MRI measures in meta-analyses. MR analyses did not reveal a causal relation between mtDNA CN in blood and cognition.Discussion
Higher mtDNA CN in blood is associated with better current and future general cognitive function in large and diverse communities across the United States. Although MR analyses did not support a causal role, additional research is needed to assess causality. Circulating mtDNA CN could serve nevertheless as a biomarker of current and future cognitive function in the community.Many UC-authored scholarly publications are freely available on this site because of the UC's open access policies. Let us know how this access is important for you.
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