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Mg2+-induced conformational changes in the btuB riboswitch from E. coli

机译:Mg2 +诱导大肠杆菌btuB核糖开关的构象变化

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Mg2+ has been shown to modulate the function of riboswitches by facilitating the ligand-riboswitch interactions. The btuB riboswitch from Escherichia coli undergoes a conformational change upon binding to its ligand, coenzyme B12 (adenosylcobalamine, AdoCbl), and down-regulates the expression of the B12 transporter protein BtuB in order to control the cellular levels of AdoCbl. Here, we discuss the structural folding attained by the btuB riboswitch from E. coli in response to Mg2+ and how it affects the ligand binding competent conformation of the RNA. The btuB riboswitch notably adopts different conformational states depending upon the concentration of Mg2+. With the help of in-line probing, we show the existence of at least two specific conformations, one being achieved in the complete absence of Mg2+ (or low Mg2+ concentration) and the other appearing above ~0.5 mM Mg2+. Distinct regions of the riboswitch exhibit different dissociation constants toward Mg2+, indicating a stepwise folding of the btuB RNA. Increasing the Mg2+ concentration drives the transition from one conformation toward the other. The conformational state existing above 0.5 mM Mg2+ defines the binding competent conformation of the btuB riboswitch which can productively interact with the ligand, coenzyme B12, and switch the RNA conformation. Moreover, raising the Mg2+ concentration enhances the ratio of switched RNA in the presence of AdoCbl. The lack of a AdoCbl-induced conformational switch experienced by the btuB riboswitch in the absence of Mg2+ indicates a crucial role played by Mg2+ for defining an active conformation of the riboswitch.
机译:已显示Mg2 +通过促进配体-核糖开关相互作用来调节核糖开关的功能。大肠杆菌的btuB核糖开关在与其配体辅酶B12(腺苷基钴胺素,AdoCbl)结合后发生构象变化,并下调B12转运蛋白BtuB的表达,以控制AdoCbl的细胞水平。在这里,我们讨论了来自大肠杆菌的btuB核糖开关响应Mg2 +而获得的结构折叠,以及它如何影响RNA的配体结合感受态构象。取决于Mg 2+的浓度,btuB核糖开关明显采用不同的构象状态。借助在线探测,我们显示了至少两个特定构象的存在,一个构象是在完全不存在Mg2 +(或低Mg2 +浓度)的情况下实现的,另一个在高于约0.5 mM Mg2 +的情况下出现。核糖开关的不同区域对Mg2 +表现出不同的解离常数,表明btuB RNA逐步折叠。 Mg2 +浓度的增加推动了从一种构象向另一种构象的转变。存在于0.5 mM Mg2 +以上的构象状态定义了btuB核糖开关的结合能力构象,该构象状态可与配体,辅酶B12高效相互作用并转换RNA构象。此外,在存在AdoCbl的情况下,提高Mg2 +的浓度可提高转换RNA的比例。在缺少Mg2 +的情况下,btuB核糖开关缺乏AdoCbl诱导的构象转换,这表明Mg2 +在定义核糖开关的活性构象方面起着至关重要的作用。

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