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A functional relationship between helix 1 and the 900 tetraloop of 16S ribosomal RNA within the bacterial ribosome

机译:螺旋1和细菌核糖体内16S核糖体RNA的900四环之间的功能关系

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摘要

The conserved 900 tetraloop that caps helix 27 of 16S ribosomal RNA (rRNA) interacts with helix 24 of 16S rRNA and also with helix 67 of 23S rRNA, forming the intersubunit bridge B2c, proximal to the decoding center. in previous studies, we investigated how the interaction between the 900 tetraloop and helix 24 participates in subunit association and translational fidelity. In the present study, we investigated whether the 900 tetraloop is involved in other undetected interactions with different regions of the Escherichia coli 16S rRNA. Using a genetic complementation approach, we selected mutations in 16S rRNA that compensate for a 900 tetraloop mutation, A900G, which severely impairs subunit association and translational fidelity. Mutations were randomly introduced in 16S rRNA, using either a mutagenic XL1-Red E. coli strain or an error-prone PCR strategy. Gain-of-function mutations were selected in vivo with a specialized ribosome system. Two mutations, the deletion of U12 and the U12C substitution, were thus independently selected in helix 1 of 16S rRNA. This helix is located in the vicinity of helix 27, but does not directly contact the 900 tetraloop in the crystal structures of the ribosome. Both mutations correct the subunit association and translational fidelity defects caused by the A900G mutation, revealing an unanticipated functional interaction between these two regions of 16S rRNA.
机译:覆盖16S核糖体RNA(rRNA)的螺旋27的保守900四环与16S rRNA的螺旋24以及23S rRNA的螺旋67相互作用,形成了靠近解码中心的亚基间桥B2c。在以前的研究中,我们调查了900四环和螺旋24之间的相互作用如何参与亚基缔合和翻译保真度。在本研究中,我们调查了900四环是否参与了与大肠杆菌16S rRNA不同区域的其他未检测到的相互作用。使用遗传互补方法,我们选择了16S rRNA中可补偿900个四环突变A900G的突变,该突变会严重损害亚基缔合和翻译保真度。使用诱变的XL1-Red大肠杆菌菌株或易错PCR策略将突变随机引入16S rRNA中。使用专门的核糖体系统在体内选择功能获得性突变。因此,在16S rRNA的螺旋1中独立选择了两个突变,即U12的缺失和U12C的取代。该螺旋位于螺旋27的附近,但是不与核糖体的晶体结构中的900四环直接接触。两种突变均纠正了由A900G突变引起的亚基缔合和翻译保真度缺陷,从而揭示了16S rRNA的这两个区域之间无法预期的功能相互作用。

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