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GWAS of epigenetic aging rates in blood reveals a critical role for TERT
Ake T. Lu, Luting Xue, Elias Salfati, Brian H. Chen, Luigi Ferrucci, Daniel Levy, Roby Joehanes, Joanne M. Murabito, Douglas P. Kiel, Pei-Chien Tsai, İdil Yet, Jordana T. Bell, Massimo Mangino, Toshiko Tanaka, Allan F. McRae
Nature Communications · 2018 · ▲ 228 citations
Abstract
Abstract DNA methylation age is an accurate biomarker of chronological age and predicts lifespan, but its underlying molecular mechanisms are unknown. In this genome-wide association study of 9907 individuals, we find gene variants mapping to five loci associated with intrinsic epigenetic age acceleration (IEAA) and gene variants in three loci associated with extrinsic epigenetic age acceleration (EEAA). Mendelian randomization analysis suggests causal influences of menarche and menopause on IEAA and lipoproteins on IEAA and EEAA. Variants associated with longer leukocyte telomere(definition) length (LTL) in the telomerase reverse transcriptase gene ( TERT ) paradoxically confer higher IEAA ( P < 2.7 × 10 −11 ). Causal modeling indicates TERT -specific and independent effects on LTL and IEAA. Experimental hTERT-expression in primary human fibroblasts engenders a linear increase in DNA methylation age with cell population doubling number. Together, these findings indicate a critical role for hTERT in regulating the epigenetic clock(definition), in addition to its established role of compensating for cell replication-dependent telomere shortening.
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- 10.1038/s41467-017-02697-5
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APA
Lu, A.T., Xue, L., Salfati, E., Chen, B.H., Ferrucci, L., Levy, D., Joehanes, R., Murabito, J.M., Kiel, D.P., Tsai, P., Yet, �., Bell, J.T., Mangino, M., Tanaka, T., McRae, A.F., Marioni, R.E., Visscher, P.M., Wray, N.R., Deary, I.J., & Levine, M.E. (2018). GWAS of epigenetic aging rates in blood reveals a critical role for TERT. <em>Nature Communications</em>. https://doi.org/10.1038/s41467-017-02697-5
Vancouver
Lu AT, Xue L, Salfati E, Chen BH, Ferrucci L, Levy D, et al. GWAS of epigenetic aging rates in blood reveals a critical role for TERT. Nature Communications. 2018. doi:10.1038/s41467-017-02697-5.
BibTeX
@article{ake2018GWASof,
title = {GWAS of epigenetic aging rates in blood reveals a critical role for TERT},
author = {Ake T. Lu and Luting Xue and Elias Salfati and Brian H. Chen and Luigi Ferrucci and Daniel Levy and Roby Joehanes and Joanne M. Murabito and Douglas P. Kiel and Pei-Chien Tsai and İdil Yet and Jordana T. Bell and Massimo Mangino and Toshiko Tanaka and Allan F. McRae and Riccardo E. Marioni and Peter M. Visscher and Naomi R. Wray and Ian J. Deary and Morgan E. Levine and Austin Quach and Themistocles L. Assimes and Philip S. Tsao and Devin Absher and James D. Stewart},
journal = {Nature Communications},
year = {2018},
doi = {10.1038/s41467-017-02697-5},
}
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