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Multi-omic underpinnings of epigenetic aging and human longevity

Author

Listed:
  • Lucas A. Mavromatis

    (National Institutes of Health)

  • Daniel B. Rosoff

    (National Institutes of Health
    University of Oxford)

  • Andrew S. Bell

    (National Institutes of Health)

  • Jeesun Jung

    (National Institutes of Health)

  • Josephin Wagner

    (National Institutes of Health)

  • Falk W. Lohoff

    (National Institutes of Health)

Abstract

Biological aging is accompanied by increasing morbidity, mortality, and healthcare costs; however, its molecular mechanisms are poorly understood. Here, we use multi-omic methods to integrate genomic, transcriptomic, and metabolomic data and identify biological associations with four measures of epigenetic age acceleration and a human longevity phenotype comprising healthspan, lifespan, and exceptional longevity (multivariate longevity). Using transcriptomic imputation, fine-mapping, and conditional analysis, we identify 22 high confidence associations with epigenetic age acceleration and seven with multivariate longevity. FLOT1, KPNA4, and TMX2 are novel, high confidence genes associated with epigenetic age acceleration. In parallel, cis-instrument Mendelian randomization of the druggable genome associates TPMT and NHLRC1 with epigenetic aging, supporting transcriptomic imputation findings. Metabolomics Mendelian randomization identifies a negative effect of non-high-density lipoprotein cholesterol and associated lipoproteins on multivariate longevity, but not epigenetic age acceleration. Finally, cell-type enrichment analysis implicates immune cells and precursors in epigenetic age acceleration and, more modestly, multivariate longevity. Follow-up Mendelian randomization of immune cell traits suggests lymphocyte subpopulations and lymphocytic surface molecules affect multivariate longevity and epigenetic age acceleration. Our results highlight druggable targets and biological pathways involved in aging and facilitate multi-omic comparisons of epigenetic clocks and human longevity.

Suggested Citation

  • Lucas A. Mavromatis & Daniel B. Rosoff & Andrew S. Bell & Jeesun Jung & Josephin Wagner & Falk W. Lohoff, 2023. "Multi-omic underpinnings of epigenetic aging and human longevity," Nature Communications, Nature, vol. 14(1), pages 1-15, December.
  • Handle: RePEc:nat:natcom:v:14:y:2023:i:1:d:10.1038_s41467-023-37729-w
    DOI: 10.1038/s41467-023-37729-w
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    1. Alexander Lachmann & Denis Torre & Alexandra B. Keenan & Kathleen M. Jagodnik & Hoyjin J. Lee & Lily Wang & Moshe C. Silverstein & Avi Ma’ayan, 2018. "Massive mining of publicly available RNA-seq data from human and mouse," Nature Communications, Nature, vol. 9(1), pages 1-10, December.
    2. Jude Gibson & Tom C Russ & Toni-Kim Clarke & David M Howard & Robert F Hillary & Kathryn L Evans & Rosie M Walker & Mairead L Bermingham & Stewart W Morris & Archie Campbell & Caroline Hayward & Aliso, 2019. "A meta-analysis of genome-wide association studies of epigenetic age acceleration," PLOS Genetics, Public Library of Science, vol. 15(11), pages 1-30, November.
    3. Claudia Giambartolomei & Damjan Vukcevic & Eric E Schadt & Lude Franke & Aroon D Hingorani & Chris Wallace & Vincent Plagnol, 2014. "Bayesian Test for Colocalisation between Pairs of Genetic Association Studies Using Summary Statistics," PLOS Genetics, Public Library of Science, vol. 10(5), pages 1-15, May.
    4. Paul R. H. J. Timmers & James F. Wilson & Peter K. Joshi & Joris Deelen, 2020. "Multivariate genomic scan implicates novel loci and haem metabolism in human ageing," Nature Communications, Nature, vol. 11(1), pages 1-10, December.
    5. Amand F. Schmidt & Chris Finan & Maria Gordillo-Marañón & Folkert W. Asselbergs & Daniel F. Freitag & Riyaz S. Patel & Benoît Tyl & Sandesh Chopade & Rupert Faraway & Magdalena Zwierzyna & Aroon D. Hi, 2020. "Genetic drug target validation using Mendelian randomisation," Nature Communications, Nature, vol. 11(1), pages 1-12, December.
    6. Christiaan A de Leeuw & Joris M Mooij & Tom Heskes & Danielle Posthuma, 2015. "MAGMA: Generalized Gene-Set Analysis of GWAS Data," PLOS Computational Biology, Public Library of Science, vol. 11(4), pages 1-19, April.
    7. Ake T. Lu & Luting Xue & Elias L. Salfati & Brian H. Chen & Luigi Ferrucci & Daniel Levy & Roby Joehanes & Joanne M. Murabito & Douglas P. Kiel & Pei-Chien Tsai & Idil Yet & Jordana T. Bell & Massimo , 2018. "GWAS of epigenetic aging rates in blood reveals a critical role for TERT," Nature Communications, Nature, vol. 9(1), pages 1-13, December.
    8. Chris Wallace, 2021. "A more accurate method for colocalisation analysis allowing for multiple causal variants," PLOS Genetics, Public Library of Science, vol. 17(9), pages 1-11, September.
    9. Helian Feng & Nicholas Mancuso & Alexander Gusev & Arunabha Majumdar & Megan Major & Bogdan Pasaniuc & Peter Kraft, 2021. "Leveraging expression from multiple tissues using sparse canonical correlation analysis and aggregate tests improves the power of transcriptome-wide association studies," PLOS Genetics, Public Library of Science, vol. 17(4), pages 1-21, April.
    10. Gibran Hemani & Kate Tilling & George Davey Smith, 2017. "Orienting the causal relationship between imprecisely measured traits using GWAS summary data," PLOS Genetics, Public Library of Science, vol. 13(11), pages 1-22, November.
    11. Alexander G. Bick & Joshua S. Weinstock & Satish K. Nandakumar & Charles P. Fulco & Erik L. Bao & Seyedeh M. Zekavat & Mindy D. Szeto & Xiaotian Liao & Matthew J. Leventhal & Joseph Nasser & Kyle Chan, 2020. "Inherited causes of clonal haematopoiesis in 97,691 whole genomes," Nature, Nature, vol. 586(7831), pages 763-768, October.
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