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Ligand binding and gene control characteristics of tandem riboswitches in Bacillus anthracis

机译:炭疽芽孢杆菌串联核糖开关的配体结合和基因调控特性

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摘要

Most riboswitches are composed of a single metabolite-binding aptamer and a single expression platform that function together to regulate genes in response to changing metabolite concentrations. In rare instances, two aptamers or sometimes two complete riboswitches reside adjacent to each other in untranslated regions (UTRs) of mRNAs. We have examined an example of a tandem riboswitch in the Gram-positive bacterium Bacillus anthracis that includes two complete riboswitches for thiamine pyrophosphate (TPP). Unlike other complex riboswitch systems described recently, tandem TPP riboswitches do not exhibit cooperative ligand binding and do not detect two different types of metabolites. In contrast, both riboswitches respond independently to TPP and are predicted to function in concert to mimic the more "digital" gene control outcome observed when two aptamers bind ligands cooperatively. Our findings further demonstrate that simple gene control elements made only of RNA can be assembled in different architectures to yield more complex gene control outcomes.
机译:大多数核糖开关由单个代谢物结合适体和单个表达平台组成,它们共同作用以响应于变化的代谢物浓度调节基因。在极少数情况下,两个适配子或有时两个完整的核糖开关在mRNA的非翻译区(UTR)中彼此相邻。我们检查了革兰氏阳性细菌炭疽芽孢杆菌中的串联核糖开关的例子,其中包括硫胺素焦磷酸盐(TPP)的两个完整的核糖开关。与最近描述的其他复杂的核糖开关系统不同,串联TPP核糖开关不显示协同配体结合并且不能检测两种不同类型的代谢物。相比之下,两个核糖开关均独立地对TPP作出反应,并预计将协同发挥作用,以模仿两个适体协同结合配体时观察到的“数字”基因控制结果。我们的发现进一步证明,仅由RNA构成的简单基因控制元件可以组装在不同的结构中,以产生更复杂的基因控制结果。

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