Investigating the relationship between melatonin patterns and methylation in circadian genes among day shift and night shift workers

褪黑素 甲基化 昼夜节律 DNA甲基化 轮班制 CpG站点 内科学 内分泌学 生物 表观遗传学 基因 遗传学 医学 基因表达 神经科学
作者
Jennifer A. Ritonja,Kristan J. Aronson,Michael Leung,Lisa Flaten,Danai G. Topouza,Qing Duan,Francine Durocher,Joan Tranmer,Parveen Bhatti
出处
期刊:Occupational and Environmental Medicine [BMJ]
卷期号:79 (10): 673-680 被引量:9
标识
DOI:10.1136/oemed-2021-108111
摘要

Objectives Mechanisms underlying the carcinogenicity of night shift work remain uncertain. One compelling yet understudied cancer mechanism may involve altered DNA methylation in circadian genes due to melatonin secretion patterns. The objective of this study was to explore the relationship between melatonin secretion patterns and circadian gene methylation among day and night shift workers. Methods Female healthcare employees (n=38 day workers, n=36 night shift workers) for whom we had urinary 6-sulfatoxymelatonin secretion data from a previous study were recontacted. New blood samples were collected and used to measure methylation levels at 1150 CpG loci across 22 circadian genes using the Illumina Infinium MethylationEPIC beadchip. Linear regression was used to examine the association between melatonin (acrophase and mesor) and M values for each CpG site (false discovery rate, q=0.2), while testing for effect modification by shift work status. Results Among night shift workers, a higher mesor (24 hours of mean production of melatonin) was associated with increased methylation in the body of RORA (q=0.02) and decreased methylation in the putative promoter region of MTNR1A (q=0.03). Later acrophase (ie, time of peak concentration) was associated with increased methylation in the putative promoter region of MTNR1A (q=0.20) and decreased methylation in the body of PER3 (q=0.20). No associations were identified among day workers. Conclusions In conclusion, patterns in melatonin secretion were associated with differential circadian gene methylation among night shift workers. Melatonin and alteration of DNA methylation in circadian genes may be one pathway towards increased cancer risk, although larger-scale studies examining multiple time points are needed.
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