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中国青岛中老年与年龄相关听力损失的同卵双胞胎的全基因组 DNA 甲基化分析。

Genome-wide DNA methylation analysis of middle-aged and elderly monozygotic twins with age-related hearing loss in Qingdao, China.

机构信息

Department of Epidemiology and Health Statistics, Public Health College, Qingdao University, Qingdao, China.

Qingdao Maternal and Child Health and Family Planning Service Center, Qingdao, China.

出版信息

Gene. 2023 Jan 15;849:146918. doi: 10.1016/j.gene.2022.146918. Epub 2022 Sep 27.

Abstract

OBJECTIVE

To explore the differences in DNA methylation associated with age-related hearing loss in a study of 57 twin pairs from China.

DESIGN

Monozygotic twins were identified through the Qingdao Twin Registration system. The median age of participants was > 50 years. Their hearing thresholds were measured using a multilevel pure-tone audiometry assessment. The pure-tone audiometry was calculated at low frequencies (0.5, 1.0, and 2.0 kHz), speech frequencies (0.5, 1.0, 2.0, and 4.0 kHz), and high frequencies (4.0 and 8 kHz). The CpG sites were tested using a linear mixed-effects model, and the function of the cis-regulatory regions and ontological enrichments were predicted using the online Genomic Regions Enrichment of Annotations Tool. The differentially methylated regions were identified using a comb-p python library approach.

RESULTS

In each of the PTA categories (low-, speech-, high-frequency), age-related hearing loss was detected in 25.9%, 19.3%, and 52.8% of participants. In the low-, speech- and high-frequency categories we identified 18, 42, and 12 individual CpG sites and 6, 11, and 6 differentially methylated regions. The CpG site located near DUSP4 had the strongest association with low- and speech-frequency, while the strongest association with high-frequency was near C21orf58. We identified associations of ALG10 with high-frequency hearing, C3 and LCK with low- and speech-frequency hearing, and GBX2 with low-frequency hearing. Top pathways that may be related to hearing, such as the Notch signaling pathway, were also identified.

CONCLUSION

Our study is the first of its kind to identify these genes and their associated with DNA methylation may play essential roles in the hearing process. The results of our epigenome-wide association study on twins clarify the complex mechanisms underlying age-related hearing loss.

摘要

目的

通过对来自中国的 57 对双胞胎进行研究,探讨与年龄相关性听力损失相关的 DNA 甲基化差异。

设计

通过青岛双胞胎登记系统鉴定同卵双胞胎。参与者的中位年龄>50 岁。使用多层次纯音听力评估测量他们的听力阈值。纯音听力在低频(0.5、1.0 和 2.0 kHz)、语音频率(0.5、1.0、2.0 和 4.0 kHz)和高频(4.0 和 8 kHz)进行计算。使用线性混合效应模型测试 CpG 位点,并使用在线基因调控区域富集分析工具预测顺式调控区域和本体论富集功能。使用 comb-p python 库方法识别差异甲基化区域。

结果

在每个 PTA 类别(低频、语音、高频)中,25.9%、19.3%和 52.8%的参与者出现年龄相关性听力损失。在低频、语音和高频类别中,我们分别鉴定了 18、42 和 12 个个体 CpG 位点和 6、11 和 6 个差异甲基化区域。位于 DUSP4 附近的 CpG 位点与低频和语音频率相关性最强,而与高频相关性最强的是位于 C21orf58 附近。我们鉴定了与高频听力相关的 ALG10、与低频和语音频率相关的 C3 和 LCK 以及与低频听力相关的 GBX2 的关联。还确定了与听力可能相关的通路,如 Notch 信号通路。

结论

我们的研究首次鉴定了这些基因及其与 DNA 甲基化的关联,这些基因及其与 DNA 甲基化的关联可能在听力过程中发挥重要作用。我们对双胞胎进行的全基因组关联研究结果阐明了年龄相关性听力损失的复杂机制。

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