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Clonal hematopoiesis associated with epigenetic aging and clinical outcomes
Daniel Nachun, Ake T. Lu, Alexander G. Bick, Pradeep Natarajan, Joshua Weinstock, Mindy D Szeto, Sekar Kathiresan, Gonçalo R. Abecasis, Kent D. Taylor, Xiuqing Guo, Russ Tracy, Peter Durda, Yongmei Liu, Craig Johnson, Stephen S. Rich
Aging Cell · 2021 · ▲ 133 citations
Abstract
Abstract Clonal hematopoiesis of indeterminate potential (CHIP) is a common precursor state for blood cancers that most frequently occurs due to mutations in the DNA‐methylation modifying enzymes DNMT3A or TET2 . We used DNA‐methylation array and whole‐genome sequencing data from four cohorts together comprising 5522 persons to study the association between CHIP, epigenetic clocks, and health outcomes. CHIP was strongly associated with epigenetic age acceleration, defined as the residual after regressing epigenetic clock(definition) age on chronological age, in several clocks, ranging from 1.31 years (GrimAge, p < 8.6 × 10 −7 ) to 3.08 years (EEAA, p < 3.7 × 10 −18 ). Mutations in most CHIP genes except DNA‐damage response genes were associated with increases in several measures of age acceleration. CHIP carriers with mutations in multiple genes had the largest increases in age acceleration and decrease in estimated telomere(definition) length. Finally, we found that ~40% of CHIP carriers had acceleration >0 in both Hannum and GrimAge (referred to as AgeAccelHG+). This group was at high risk of all‐cause mortality (hazard ratio 2.90, p < 4.1 × 10 −8 ) and coronary heart disease (CHD) (hazard ratio 3.24, p < 9.3 × 10 −6 ) compared to those who were CHIP−/AgeAccelHG−. In contrast, the other ~60% of CHIP carriers who were AgeAccelHG− were not at increased risk of these outcomes. In summary, CHIP is strongly linked to age acceleration in multiple clocks, and the combination of CHIP and epigenetic aging may be used to identify a population at high risk for adverse outcomes and who may be a target for clinical interventions.
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- 10.1111/acel.13366
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- 2026-07-22 MST
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APA
Nachun, D., Lu, A.T., Bick, A.G., Natarajan, P., Weinstock, J., Szeto, M.D., Kathiresan, S., Abecasis, G.R., Taylor, K.D., Guo, X., Tracy, R., Durda, P., Liu, Y., Johnson, C., Rich, S.S., Berg, D.V.D., Laurie, C.A., Blackwell, T., Papanicolaou, G., & Correa, A. (2021). Clonal hematopoiesis associated with epigenetic aging and clinical outcomes. <em>Aging Cell</em>. https://doi.org/10.1111/acel.13366
Vancouver
Nachun D, Lu AT, Bick AG, Natarajan P, Weinstock J, Szeto MD, et al. Clonal hematopoiesis associated with epigenetic aging and clinical outcomes. Aging Cell. 2021. doi:10.1111/acel.13366.
BibTeX
@article{daniel2021Clonal,
title = {Clonal hematopoiesis associated with epigenetic aging and clinical outcomes},
author = {Daniel Nachun and Ake T. Lu and Alexander G. Bick and Pradeep Natarajan and Joshua Weinstock and Mindy D Szeto and Sekar Kathiresan and Gonçalo R. Abecasis and Kent D. Taylor and Xiuqing Guo and Russ Tracy and Peter Durda and Yongmei Liu and Craig Johnson and Stephen S. Rich and David Van Den Berg and Cecilia A. Laurie and Tom Blackwell and George Papanicolaou and Adolfo Correa and Laura M. Raffield and Andrew D. Johnson and Joanne M. Murabito and JoAnn E. Manson and Pinkal Desai},
journal = {Aging Cell},
year = {2021},
doi = {10.1111/acel.13366},
}
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