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小鼠杂交品系中的代际基因组DNA甲基化模式。

Intergenerational genomic DNA methylation patterns in mouse hybrid strains.

作者信息

Orozco Luz D, Rubbi Liudmilla, Martin Lisa J, Fang Fang, Hormozdiari Farhad, Che Nam, Smith Andrew D, Lusis Aldons J, Pellegrini Matteo

出版信息

Genome Biol. 2014 Apr 30;15(5):R68. doi: 10.1186/gb-2014-15-5-r68.

Abstract

BACKGROUND

DNA methylation is a contributing factor to both rare and common human diseases, and plays a major role in development and gene silencing. While the variation of DNA methylation among individuals has been partially characterized, the degree to which methylation patterns are preserved across generations is still poorly understood. To determine the extent of methylation differences between two generations of mice we examined DNA methylation patterns in the livers of eight parental and F1 mice from C57BL/6J and DBA/2J mouse strains using bisulfite sequencing.

RESULTS

We find a large proportion of reproducible methylation differences between C57BL/6J and DBA/2J chromosomes in CpGs, which are highly heritable between parent and F1 mice. We also find sex differences in methylation levels in 396 genes, and 11% of these are differentially expressed between females and males. Using a recently developed approach to identify allelically methylated regions independently of genotypic differences, we identify 112 novel putative imprinted genes and microRNAs, and validate imprinting at the RNA level in 10 of these genes.

CONCLUSIONS

The majority of DNA methylation differences among individuals are associated with genetic differences, and a much smaller proportion of these epigenetic differences are due to sex, imprinting or stochastic intergenerational effects. Epigenetic differences can be a determining factor in heritable traits and should be considered in association studies for molecular and clinical traits, as we observed that methylation differences in the mouse model are highly heritable and can have functional consequences on molecular traits such as gene expression.

摘要

背景

DNA甲基化是导致人类罕见病和常见疾病的一个因素,在发育和基因沉默中起主要作用。虽然个体间DNA甲基化的变异已得到部分表征,但甲基化模式在代际间的保留程度仍知之甚少。为了确定两代小鼠之间甲基化差异的程度,我们使用亚硫酸氢盐测序法检测了来自C57BL/6J和DBA/2J小鼠品系的八只亲代小鼠和F1代小鼠肝脏中的DNA甲基化模式。

结果

我们发现C57BL/6J和DBA/2J染色体上的CpG中存在很大比例可重复的甲基化差异,这些差异在亲代和F1代小鼠之间具有高度遗传性。我们还发现396个基因的甲基化水平存在性别差异,其中11%在雌性和雄性之间存在差异表达。使用一种最近开发的独立于基因型差异来识别等位基因甲基化区域的方法,我们识别出112个新的假定印记基因和微小RNA,并在其中10个基因的RNA水平上验证了印记。

结论

个体间大多数DNA甲基化差异与遗传差异相关,而这些表观遗传差异中因性别、印记或随机代际效应导致的比例要小得多。表观遗传差异可能是可遗传性状的一个决定因素,在分子和临床性状的关联研究中应予以考虑,因为我们观察到小鼠模型中的甲基化差异具有高度遗传性,并且可能对基因表达等分子性状产生功能影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/962f/4076608/70b088c5c5c1/gb-2014-15-5-r68-1.jpg

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