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Riboswitch-mediated control of gene expression in eukaryotes

机译:核糖开关介导的真核生物基因表达控制

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摘要

The discovery of metabolite-sensing RNA domains with gene regulatory functions, so-called riboswitches, has greatly expanded our view of the structural and functional complexity of RNA. Hitherto, more than 20 distinct riboswitch classes have been identified, which respond to a variety of small molecules and perform sophisticated gene regulatory tasks. Riboswitches are typically positioned in the 5′ untranslated region of bacterial mRNAs, where they control gene expression by transcriptional or translational attenuation. However, the recent investigation of additional riboswitch classes has revealed a more complex repertoire of regulatory mechanisms. This also includes splicing control in filamentous fungi, green algae and higher plants by thiamin pyrophosphate-binding riboswitches, the only class of metabolite-sensing RNAs identified in eukaryotes so far. All eukaryotic riboswitches characterized to date modulate, in a first step, splicing, but the downstream processes under control vary fundamentally among different species further highlighting the versatility of this gene regulatory mechanism.
机译:具有基因调控功能的代谢物敏感RNA结构域(即所谓的核糖开关)的发现极大地扩展了我们对RNA结构和功能复杂性的认识。迄今为止,已经鉴定出超过20种不同的核糖开关类别,它们可响应各种小分子并执行复杂的基因调节任务。核糖开关通常位于细菌mRNA的5'非翻译区,在那里它们通过转录或翻译衰减来控制基因表达。但是,最近对其他核糖开关类别的研究表明,调节机制更为复杂。这还包括通过硫胺素焦磷酸盐结合的核糖开关对丝状真菌,绿藻和高等植物进行剪接控制,这是迄今为止在真核生物中鉴定出的唯一一类代谢物敏感RNA。迄今为止,所有表征为真核生物的核糖开关均会在第一步中进行剪接调控,但受控制的下游过程在不同物种之间根本不同,这进一步凸显了该基因调控机制的多功能性。

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