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Huntington's disease accelerates epigenetic aging of human brain and disrupts DNA methylation levels

Steve Horvath, Peter Langfelder, Seung Kwak, Jeff Aaronson, Jim Rosinski, Thomas Vogt, M Eszes, Richard L. M. Faull, Maurice A. Curtis, Henry J. Waldvogel, Oi‐Wa Choi, Spencer Tung, Harry V. Vinters, Giovanni Coppola, X. William Yang

Aging · 2016 · ▲ 245 citations

Abstract

Age of Huntington's disease (HD) motoric onset is strongly related to the number of CAG trinucleotide repeats in the huntingtin gene, suggesting that biological tissue age plays an important role in disease etiology. Recently, a DNA methylation based biomarker of tissue age has been advanced as an epigenetic aging clock. We sought to inquire if HD is associated with an accelerated epigenetic age. DNA methylation data was generated for 475 brain samples from various brain regions of 26 HD cases and 39 controls. Overall, brain regions from HD cases exhibit a significant epigenetic age acceleration effect (p=0.0012). A multivariate model analysis suggests that HD status increases biological age by 3.2 years. Accelerated epigenetic age can be observed in specific brain regions (frontal lobe, parietal lobe, and cingulate gyrus). After excluding controls, we observe a negative correlation (r=-0.41, p=5.5×10-8) between HD gene CAG repeat length and the epigenetic age of HD brain samples. Using correlation network analysis, we identify 11 co-methylation modules with a significant association with HD status across 3 broad cortical regions. In conclusion, HD is associated with an accelerated epigenetic age of specific brain regions and more broadly with substantial changes in brain methylation levels.

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Provenance

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OpenAlex
DOI
10.18632/aging.101005
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2026-07-15 MST

Cite this

APA
Horvath, S., Langfelder, P., Kwak, S., Aaronson, J., Rosinski, J., Vogt, T., Eszes, M., Faull, R.L.M., Curtis, M.A., Waldvogel, H.J., Choi, O., Tung, S., Vinters, H.V., Coppola, G., &amp; Yang, X.W. (2016). Huntington's disease accelerates epigenetic aging of human brain and disrupts DNA methylation levels. <em>Aging</em>. https://doi.org/10.18632/aging.101005
Vancouver
Horvath S, Langfelder P, Kwak S, Aaronson J, Rosinski J, Vogt T, et al. Huntington's disease accelerates epigenetic aging of human brain and disrupts DNA methylation levels. Aging. 2016. doi:10.18632/aging.101005.
BibTeX
@unpublished{steve2016Huntin, title = {Huntington's disease accelerates epigenetic aging of human brain and disrupts DNA methylation levels}, author = {Steve Horvath and Peter Langfelder and Seung Kwak and Jeff Aaronson and Jim Rosinski and Thomas Vogt and M Eszes and Richard L. M. Faull and Maurice A. Curtis and Henry J. Waldvogel and Oi‐Wa Choi and Spencer Tung and Harry V. Vinters and Giovanni Coppola and X. William Yang}, journal = {Aging}, year = {2016}, doi = {10.18632/aging.101005}, }

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