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环境诱导的跨代遗传对疾病病因中的系统表观遗传学产生影响。

Environmental induced transgenerational inheritance impacts systems epigenetics in disease etiology.

机构信息

Center for Reproductive Biology, School of Biological Sciences, Washington State University, Pullman, WA, 99164-4236, USA.

出版信息

Sci Rep. 2022 Apr 19;12(1):5452. doi: 10.1038/s41598-022-09336-0.

Abstract

Environmental toxicants have been shown to promote the epigenetic transgenerational inheritance of disease through exposure specific epigenetic alterations in the germline. The current study examines the actions of hydrocarbon jet fuel, dioxin, pesticides (permethrin and methoxychlor), plastics, and herbicides (glyphosate and atrazine) in the promotion of transgenerational disease in the great grand-offspring rats that correlates with specific disease associated differential DNA methylation regions (DMRs). The transgenerational disease observed was similar for all exposures and includes pathologies of the kidney, prostate, and testis, pubertal abnormalities, and obesity. The disease specific DMRs in sperm were exposure specific for each pathology with negligible overlap. Therefore, for each disease the DMRs and associated genes were distinct for each exposure generational lineage. Observations suggest a large number of DMRs and associated genes are involved in a specific pathology, and various environmental exposures influence unique subsets of DMRs and genes to promote the transgenerational developmental origins of disease susceptibility later in life. A novel multiscale systems biology basis of disease etiology is proposed involving an integration of environmental epigenetics, genetics and generational toxicology.

摘要

环境毒物已被证明通过暴露于生殖系中的特定表观遗传改变来促进疾病的表观遗传跨代遗传。本研究检查了碳氢化合物喷气燃料、二恶英、杀虫剂(氯菊酯和甲氧氯)、塑料和除草剂(草甘膦和莠去津)在促进大曾孙代大鼠跨代疾病中的作用,这些疾病与特定的疾病相关差异 DNA 甲基化区域(DMRs)相关。所有暴露都会导致类似的跨代疾病,包括肾脏、前列腺和睾丸的病理、青春期异常和肥胖。精子中的疾病特异性 DMRs 对每种病理学具有暴露特异性,几乎没有重叠。因此,对于每种疾病,DMRs 和相关基因在每个暴露代系中都是不同的。观察结果表明,大量 DMRs 和相关基因参与特定的病理学,并且各种环境暴露影响独特的 DMRs 和基因子集,以促进生命后期疾病易感性的跨代发育起源。提出了一种新的疾病病因多尺度系统生物学基础,涉及环境表观遗传学、遗传学和代际毒理学的整合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0bc2/9018793/6b389b798281/41598_2022_9336_Fig1_HTML.jpg

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