Dysfunctional epigenetic aging of the normal colon and colorectal cancer risk

Author:

Wang Ting,Maden Sean K.,Luebeck Georg E.,Li Christopher I.,Newcomb Polly A.,Ulrich Cornelia M.,Joo Ji-Hoon E.,Buchanan Daniel D.,Milne Roger L.,Southey Melissa C.,Carter Kelly T.,Willbanks Amber R.,Luo Yanxin,Yu Ming,Grady William M.ORCID

Abstract

Abstract Background Chronological age is a prominent risk factor for many types of cancers including colorectal cancer (CRC). Yet, the risk of CRC varies substantially between individuals, even within the same age group, which may reflect heterogeneity in biological tissue aging between people. Epigenetic clocks based on DNA methylation are a useful measure of the biological aging process with the potential to serve as a biomarker of an individual’s susceptibility to age-related diseases such as CRC. Methods We conducted a genome-wide DNA methylation study on samples of normal colon mucosa (N = 334). Subjects were assigned to three cancer risk groups (low, medium, and high) based on their personal adenoma or cancer history. Using previously established epigenetic clocks (Hannum, Horvath, PhenoAge, and EpiTOC), we estimated the biological age of each sample and assessed for epigenetic age acceleration in the samples by regressing the estimated biological age on the individual’s chronological age. We compared the epigenetic age acceleration between different risk groups using a multivariate linear regression model with the adjustment for gender and cell-type fractions for each epigenetic clock. An epigenome-wide association study (EWAS) was performed to identify differential methylation changes associated with CRC risk. Results Each epigenetic clock was significantly correlated with the chronological age of the subjects, and the Horvath clock exhibited the strongest correlation in all risk groups (r > 0.8, p < 1 × 10−30). The PhenoAge clock (p = 0.0012) revealed epigenetic age deceleration in the high-risk group compared to the low-risk group. Conclusions Among the four DNA methylation-based measures of biological age, the Horvath clock is the most accurate for estimating the chronological age of individuals. Individuals with a high risk for CRC have epigenetic age deceleration in their normal colons measured by the PhenoAge clock, which may reflect a dysfunctional epigenetic aging process.

Funder

National Institutes of Health

National Cancer Institute

Huntsman Cancer Foundation

R.A.C.E. Charities

Cottrell Family Fund

Rodger Haggitt Endowed Chair

Listwin Family Foundation

Seattle Translational Tumor Research program

Fred Hutchinson Cancer Research Center

Publisher

Springer Science and Business Media LLC

Subject

Genetics(clinical),Developmental Biology,Genetics,Molecular Biology

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