A Nuclear RNA Degradation Pathway Helps Silence Polycomb/H3K27me3-Marked Loci in Caenorhabditis elegans.

Anna Mattout, Dimos Gaidatzis, Véronique Kalck, Susan M Gasser
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Abstract

In fission yeast and plants, RNA-processing pathways contribute to heterochromatin silencing, complementing well-characterized pathways of transcriptional repression. However, it was unclear whether this additional level of regulation occurs in metazoans. In a genetic screen, we uncovered a pathway of silencing in Caenorhabditis elegans somatic cells, whereby the highly conserved, RNA-binding complex LSM2-8 contributes to the repression of heterochromatic reporters and endogenous genes bearing the Polycomb mark H3K27me3. Importantly, the LSM2-8 complex works cooperatively with a 5'-3' exoribonuclease, XRN-2, and disruption of the pathway leads to selective mRNA stabilization. LSM2-8 complex-mediated RNA degradation does not target nor depend on H3K9me2/me3, unlike previously described pathways of heterochromatic RNA degradation. Up-regulation of lsm-8-sensitive loci coincides with a localized drop in H3K27me3 levels in the lsm-8 mutant. Put into the context of epigenetic control of gene expression, it appears that targeted RNA degradation helps repress a subset of H3K27me3-marked genes, revealing an unappreciated layer of regulation for facultative heterochromatin in animals.

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核RNA降解途径有助于沉默秀丽隐杆线虫的多梳/ h3k27me3标记位点。
在分裂酵母和植物中,rna加工途径有助于异染色质沉默,补充了转录抑制的良好表征途径。然而,尚不清楚这种额外水平的调节是否发生在后生动物中。在遗传筛选中,我们发现了秀丽隐杆线虫体细胞中的沉默途径,其中高度保守的rna结合复合体LSM2-8有助于抑制异色报告基因和携带Polycomb标记H3K27me3的内源性基因。重要的是,LSM2-8复合物与5'-3'外核糖核酸酶XRN-2协同工作,该途径的破坏可导致选择性mRNA稳定。与之前描述的异染色质RNA降解途径不同,LSM2-8复合物介导的RNA降解不靶向也不依赖于H3K9me2/me3。在lsm-8突变体中,lsm-8敏感位点的上调与H3K27me3水平的局部下降相一致。在基因表达的表观遗传控制背景下,靶向RNA降解似乎有助于抑制h3k27me3标记基因的一个子集,揭示了动物兼性异染色质的一个未被认识的调控层。
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