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DOT1L complex suppresses transcription from enhancer elements and ectopic RNAi in Caenorhabditis elegans

机译:DOT1L复合物抑制来自增强子元素和Caenorhabditis elegans的异位RNAi的转录

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摘要

Methylation of histone H3 on lysine 79 (H3K79) by DOT1L is associated with actively transcribed genes. Earlier, we described that DOT-1.1, the Caenorhabditis elegans homolog of mammalian DOT1L, cooperates with the chromatin-binding protein ZFP-1 (AF10 homolog) to negatively modulate transcription of highly and widely expressed target genes. Also, the reduction of ZFP-1 levels has consistently been associated with lower efficiency of RNA interference (RNAi) triggered by exogenous double-stranded RNA (dsRNA), but the reason for this is not clear. Here, we demonstrate that the DOT1L complex suppresses transcription originating from enhancer elements and antisense transcription, thus potentiating the expression of enhancer-regulated genes. We also show that worms lacking H3K79 methylation do not survive, and this lethality is suppressed by a loss of caspase-3 or Dicer complex components that initiate gene silencing response to exogenous dsRNA. Our results suggest that ectopic elevation of endogenous dsRNA directly or indirectly resulting from global misregulation of transcription in DOT1L complex mutants may engage the Dicer complex and, therefore, limit the efficiency of exogenous RNAi.
机译:通过DOT11对赖氨酸79(H3K79)上组蛋白H3的甲基化与主动转录的基因相关。早些时候,我们描述了DOT-1.1,哺乳动物DOT1L的Caenorhabditis elegans同源物,与染色质结合蛋白ZFP-1(AF10同源物)配合,以对高度和广泛表达的靶基因进行负面调节转录。此外,ZFP-1水平的降低始终如一地与由外源双链RNA(DSRNA)引发的RNA干扰(RNAi)的效率较低,但是这尚不清楚。这里,我们证明DOT1L复合物抑制来自增强子元素和反义转录的转录,从而增强了增强子调节基因的表达。我们还表明,缺乏H3K79甲基化的蠕虫不会存活,并且这种致命性被丧失对外源性DsRNA的基因沉默响应的Caspase-3或Dicer复合组分抑制。我们的研究结果表明,在DOT1L复杂突变体中直接或间接导致的内源性DSRNA的异位升高可能与DOT1L复合突变体中的转录均可接触,因此,限制外源RNAi的效率。

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