表观遗传控制和 rDNA 阵列的遗传

Tamara A Potapova, Paxton Kostos, Sean A McKinney, Matthew Borchers, Jeffrey S Haug, Andrea Guarracino, Steven Solar, Madelaine M Gogol, Graciela Monfort Anez, Leonardo Gomes de Lima, Yan Wang, Kate E. Hall, Sophie Hoffman, Erik Garrison, Adam M. Phillippy, Jennifer L. Gerton
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摘要

核糖体 RNA(rRNA)基因存在多个拷贝,排列成串联阵列,称为核糖体 DNA(rDNA)。基因拷贝的总数是可变的,而缓冲这种拷贝数变化的机制仍未解决。我们调查了多个人类和灵长类动物基因组中单个染色体上 rDNA 阵列的数量、分布和活性。每个个体都拥有独特的 rDNA 阵列拷贝数分布和活性指纹。在某些情况下,整个 rDNA 阵列都处于转录沉默状态。沉默的 rDNA 阵列与核仁的结合减少,染色体间的相互作用也减少,这表明 rDNA 的核仁组织功能取决于转录活性。对流动分选的染色体进行甲基测序,并结合长读测序,结果显示DNA甲基化对rDNA启动子和编码区进行了表观遗传修饰。沉默阵列处于封闭染色质状态,这一点可以从纤维-测序得出的可及性图谱中看出。去除DNA甲基化可恢复沉默阵列的转录活性。在 iPS 细胞重新编程过程中,阵列活性状态保持稳定。家族三系分析表明,无活性的 rDNA 单倍型可追溯到亲代基因组之一,这表明 rDNA 阵列的表观遗传状态可能是可遗传的。我们提出,rRNA基因的剂量受DNA甲基化的表观遗传调控,这些甲基化模式指定了核小体组织者的功能,并可进行跨代传播。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Epigenetic control and inheritance of rDNA arrays
Ribosomal RNA (rRNA) genes exist in multiple copies arranged in tandem arrays known as ribosomal DNA (rDNA). The total number of gene copies is variable, and the mechanisms buffering this copy number variation remain unresolved. We surveyed the number, distribution, and activity of rDNA arrays at the level of individual chromosomes across multiple human and primate genomes. Each individual possessed a unique fingerprint of copy number distribution and activity of rDNA arrays. In some cases, entire rDNA arrays were transcriptionally silent. Silent rDNA arrays showed reduced association with the nucleolus and decreased interchromosomal interactions, indicating that the nucleolar organizer function of rDNA depends on transcriptional activity. Methyl-sequencing of flow-sorted chromosomes, combined with long read sequencing, showed epigenetic modification of rDNA promoter and coding region by DNA methylation. Silent arrays were in a closed chromatin state, as indicated by the accessibility profiles derived from Fiber-seq. Removing DNA methylation restored the transcriptional activity of silent arrays. Array activity status remained stable through the iPS cell re-programming. Family trio analysis demonstrated that the inactive rDNA haplotype can be traced to one of the parental genomes, suggesting that the epigenetic state of rDNA arrays may be heritable. We propose that the dosage of rRNA genes is epigenetically regulated by DNA methylation, and these methylation patterns specify nucleolar organizer function and can propagate transgenerationally.
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