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父亲年龄通过涉及 REST/NRSF 的表观遗传机制影响后代。

Paternal age affects offspring via an epigenetic mechanism involving REST/NRSF.

机构信息

Department of Developmental Neuroscience, Tohoku University Graduate School of Medicine, Sendai, Japan.

Department of Disease Model, Aichi Developmental Disability Center, Aichi, Japan.

出版信息

EMBO Rep. 2021 Feb 3;22(2):e51524. doi: 10.15252/embr.202051524. Epub 2021 Jan 5.

Abstract

Advanced paternal age can have deleterious effects on various traits in the next generation. Here, we establish a paternal-aging model in mice to understand the molecular mechanisms of transgenerational epigenetics. Whole-genome target DNA methylome analyses of sperm from aged mice reveal more hypo-methylated genomic regions enriched in REST/NRSF binding motifs. Gene set enrichment analyses also reveal the upregulation of REST/NRSF target genes in the forebrain of embryos from aged fathers. Offspring derived from young mice administrated with a DNA de-methylation drug phenocopy the abnormal vocal communication of pups derived from aged fathers. In conclusion, hypo-methylation of sperm DNA can be a key molecular feature modulating neurodevelopmental programs in offspring by causing fluctuations in the expression of REST/NRSF target genes.

摘要

高龄父亲会对后代的各种特征产生有害影响。在这里,我们建立了一个小鼠的父系衰老模型,以了解跨代表观遗传学的分子机制。对来自衰老老鼠精子的全基因组靶向 DNA 甲基组分析显示,更多富含 REST/NRSF 结合基序的基因组区域呈低甲基化状态。基因集富集分析还显示,来自年老父亲的胚胎前脑中 REST/NRSF 靶基因的表达上调。用 DNA 去甲基化药物处理的幼鼠所生后代,其表型与来自年老父亲的幼鼠异常的声音交流相似。总之,精子 DNA 的低甲基化可能是通过改变 REST/NRSF 靶基因的表达来调节后代神经发育程序的关键分子特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d17e/7857438/1c35a6743dea/EMBR-22-e51524-g002.jpg

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