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Hairpin RNAs and retrotransposon LTRs effect RNAi and chromatin-based gene silencing

机译:发夹RNA和反转录转座子LTR影响RNAi和基于染色质的基因沉默

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The expression of short hairpin RNAs in several organisms silences gene expression by targeted mRNA degradation. This RNA interference (RNAi) pathway can also affect the genome, as DNA methylation arises at loci homologous to the target RNA in plants. We demonstrate in fission yeast that expression of a synthetic hairpin RNA is sufficient to silence the homologous locus in trans and causes the assembly of a patch of silent Swi6 chromatin with cohesin. This requires components of the RNAi machinery and Clr4 histone methyltransferase for small interfering RNA generation. A similar process represses several meiotic genes through nearby retrotransposon long terminal repeats (LTRs). These analyses directly implicate interspersed LTRs in regulating gene expression during cellular differentiation. [References: 53]
机译:短发夹RNA在几种生物中的表达通过靶向的mRNA降解使基因表达沉默。这种RNA干扰(RNAi)途径也会影响基因组,因为DNA甲基化出现在与植物中靶RNA同源的基因座上。我们在裂变酵母中证明,合成发夹RNA的表达足以使反式同源基因沉默,并导致与凝聚素沉默的Swi6染色质补丁的组装。这需要RNAi机制和Clr4组蛋白甲基转移酶的成分,以产生较小的干扰RNA。类似的过程通过附近的反转录转座子长末端重复序列(LTR)抑制几个减数分裂基因。这些分析直接暗示散布的LTRs在细胞分化过程中调控基因表达。 [参考:53]

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