应用于小学的综合神经肌肉训练干预诱导疾病相关基因的表观遗传修饰:一项全基因组DNA甲基化研究

IF 3.5 2区 医学 Q1 SPORT SCIENCES
Fidanka Vasileva, Raquel Font-Lladó, Víctor López-Ros, Jordi Barretina, Aleix Noguera-Castells, Manel Esteller, Abel López-Bermejo, Anna Prats-Puig
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引用次数: 0

摘要

体育锻炼已被证明可以诱导具有各种健康影响的表观遗传修饰,直接影响DNA甲基化(DNAm),以及逆转表观遗传年龄。因此,我们的目的是确定3个月综合神经肌肉训练(INT)后7-9岁学龄儿童唾液中的差异甲基化变化并评估表观遗传年龄,并探讨甲基化变化是否存在于核心基因中。核心基因被定义为人类基因组中高度相关和至关重要的基因。从西班牙赫罗纳的学校招募了40名儿童(17名男孩和23名女孩),分为对照组(N = 20)和INT组(N = 20)。INT组在体育课期间进行为期3个月的INT作为热身,包括力量,协调,动态稳定,增强训练,速度和敏捷性练习,而对照组进行传统的热身活动,包括有氧运动,这将使心血管系统做好准备,并为即将到来的课堂努力增加关节活动性。使用Illumina 900k芯片进行全基因组dna分析。核心基因的识别基于严格且被广泛接受的3点标准:参与富集通路,高连通性(≥10)和关键转录因子的靶基因。对照组有1200个差异甲基化位点(dmp), INT组有414个差异甲基化位点(dmp) (FDR 0.05), INT组1个月的表观遗传年龄降低不显著(p > 0.05)。对照组中具有dmp的基因在富集的通路之间表现出低相似性和低互连性,包括不同的通路,主要是发育和生长相关的。此外,在对照组中未发现核心基因。有趣的是,INT组中具有dmp的基因在富集通路和高互连性之间表现出高度相似性,包括涉及信号机制的相关通路,以及激素和蛋白质代谢途径。此外,INT组儿童中有17个dmp位于核心基因。本研究的主要发现是,7-9岁的学龄儿童在进行了3个月的训练后,对训练刺激产生了综合反应,其中包括17个被认为是核心基因的表观遗传修饰。试验注册:研究方案在ISRCTN注册中心注册(ISRCTN16744821)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Integrated Neuromuscular Training Intervention Applied in Primary School Induces Epigenetic Modifications in Disease-Related Genes: A Genome-Wide DNA Methylation Study.

Physical exercise has been shown to induce epigenetic modifications with various health implications, directly affect DNA methylation (DNAm), as well as reverse the epigenetic age. Hence, we aimed to identify differential methylation changes and assess the epigenetic age in the saliva of 7-9-year-old school children following a 3-month integrated neuromuscular training (INT), as well as to explore if any of the methylation changes are in core genes. Core genes are defined as genes of high relevance and essential importance within the human genome. Forty children (17 boys and 23 girls) were recruited from schools in Girona, Spain, and allocated into control (N = 20) or INT (N = 20) group. The INT group performed a 3-month INT as a warm-up during the physical education (PE) classes, encompassing strength, coordination, dynamic stabilization, plyometrics, speed, and agility exercises, whereas the control group performed traditional warm-up activities, encompassing aerobic exercises that will prepare the cardiovascular system and increase the joint mobility for the upcoming effort during the class. Genome-wide DNAm analysis was performed with the Illumina 900 K microarray. Core genes were recognized based on the accomplishment of a rigorous and widely accepted 3-point criteria: participation in the enriched pathways, high connectivity (≥ 10), and target genes of key transcription factors. There were 1200 differentially methylated positions (DMPs) in the control group and 414 DMPs in the INT group (FDR < 0.05, p < 0.05, Aβ < |0.1|), suggesting a non-significant trend of epigenetic age acceleration in the control group (1.18 months, p > 0.05) and a non-significant 1-month decrease of the epigenetic age in the INT group (p > 0.05). The genes with DMPs in the control group showed low similarity between enriched pathways and low interconnectivity, encompassing distinct pathways, mostly development and growth-related. Additionally, no core genes were identified in the control group. Interestingly, the genes with DMPs in the INT group showed high similarity between enriched pathways and high interconnectivity, encompassing related pathways involving signaling mechanisms, as well as hormone and protein metabolism pathways. Moreover, 17 DMPs in the children from the INT group were in core genes. The main findings of the present study are suggesting an integrated response to the training stimulus in 7-9-year-old school children that performed a 3-month INT, including epigenetic modifications in 17 genes considered as core genes. Trial Registration: The study protocol was registered in the ISRCTN registry (ISRCTN16744821).

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来源期刊
CiteScore
7.90
自引率
4.90%
发文量
162
审稿时长
3 months
期刊介绍: The Scandinavian Journal of Medicine & Science in Sports is a multidisciplinary journal published 12 times per year under the auspices of the Scandinavian Foundation of Medicine and Science in Sports. It aims to publish high quality and impactful articles in the fields of orthopaedics, rehabilitation and sports medicine, exercise physiology and biochemistry, biomechanics and motor control, health and disease relating to sport, exercise and physical activity, as well as on the social and behavioural aspects of sport and exercise.
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