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Epigenetic control of alternative mRNA processing at the imprinted Herc3/Nap1l5 locus

机译:在印迹的Herc3 / Nap1l5基因座上替代mRNA处理的表观遗传控制

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Alternative polyadenylation increases transcriptome diversity by generating multiple transcript isoforms from a single gene. It is thought that this process can be subject to epigenetic regulation, but few specific examples of this have been reported. We previously showed that the Mcts2/H13 locus is subject to genomic imprinting and that alternative polyadenylation of H13 transcripts occurs in an allele-specific manner, regulated by epigenetic mechanisms. Here, we demonstrate that allele-specific polyadenylation occurs at another imprinted locus with similar features. Nap1l5 is a retrogene expressed from the paternally inherited allele, is situated within an intron of a ‘host’ gene Herc3, and overlaps a CpG island that is differentially methylated between the parental alleles. In mouse brain, internal Herc3 polyadenylation sites upstream of Nap1l5 are used on the paternally derived chromosome, from which Nap1l5 is expressed, whereas a downstream site is used more frequently on the maternally derived chromosome. Ablating DNA methylation on the maternal allele at the Nap1l5 promoter increases the use of an internal Herc3 polyadenylation site and alters exon splicing. These changes demonstrate the influence of epigenetic mechanisms in regulating Herc3 alternative mRNA processing. Internal Herc3 polyadenylation correlates with expression levels of Nap1l5, suggesting a possible role for transcriptional interference. Similar mechanisms may regulate alternative polyadenylation elsewhere in the genome.
机译:备选的聚腺苷酸化作用通过从单个基因产生多个转录异构体来增加转录组多样性。认为该过程可以进行表观遗传调控,但是尚未报道其具体实例。我们以前表明Mcts2 / H13基因座受基因组印记的影响,H13转录物的替代聚腺苷酸化以等位基因特异性方式发生,并受表观遗传机制调控。在这里,我们证明等位基因特异性聚腺苷酸化发生在另一个具有相似特征的印迹基因座上。 Nap115是从父系继承的等位基因表达的逆转录基因,位于“宿主”基因Herc3的内含子内,与CpG岛重叠,后者在亲本等位基因之间被甲基化。在小鼠脑中,Nap1l5上游的内部Herc3聚腺苷酸化位点用于父本来源的染色体上,从中表达Nap1l5,而下游位点在母本来源的染色体上更频繁地使用。 Nap1l5启动子在母本等位基因上的DNA甲基化消除增加了内部Herc3聚腺苷酸化位点的使用并改变了外显子剪接。这些变化表明表观遗传机制在调节Herc3替代mRNA加工中的影响。内部Herc3聚腺苷酸化与Nap1l5的表达水平相关,提示可能存在转录干扰作用。类似的机制可能会调节基因组其他位置的替代聚腺苷酸化作用。

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