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Glycols modulate terminator stem stability and ligand-dependency of a glycine riboswitch

机译:乙二醇调节甘氨酸核糖开关的终止子茎稳定性和配体依赖性

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The Bacillus subtilis glycine riboswitch comprises tandem glycine-binding aptamers and a putative terminator stem followed by the gcvT operon. Gene expression is regulated via the sensing of glycine. However, we found that the riboswitch behaves in a "glycine-independent" manner in the presence of polyethylene glycol (PEG) and ethylene glycol. The effect is related to the formation of a terminator stem within the expression platform under such conditions. The results revealed that increasing PEG stabilized the structure of the terminator stem. By contrast, the addition of ethylene glycol destabilized the terminator stem. PEG and ethylene glycol have opposite effects on transcription as well as on stable terminator stem formation. The glycine-independency of the riboswitch and the effects of such glycols might shed light on the evolution of riboswitches.
机译:枯草芽孢杆菌甘氨酸核糖开关包含串联的甘氨酸结合适体和推定的终止子茎,随后是gcvT操纵子。基因表达是通过感测甘氨酸来调节的。但是,我们发现在聚乙二醇(PEG)和乙二醇的存在下,核糖开关的行为表现为“非甘氨酸依赖性”。这种作用与在这种条件下表达平台内终止子茎的形成有关。结果表明增加的PEG稳定了终止子茎的结构。相反,乙二醇的加入使终止子茎不稳定。 PEG和乙二醇对转录以及稳定的终止子茎形成具有相反的作用。核糖开关的甘氨酸非依赖性以及此类二醇的作用可能为核糖开关的进化提供了启示。

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