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T box transcription antitermination riboswitch: Influence of nucleotide sequence and orientation on tRNA binding by the antiterminator element

机译:T盒转录抗终止核糖开关:核苷酸序列和取向对抗终止子元件对tRNA结合的影响

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摘要

Many bacteria utilize riboswitch transcription regulation to monitor and appropriately respond to cellular levels of important metabolites or effector molecules. The T box transcription antitermination riboswitch responds to cognate uncharged tRNA by specifically stabilizing an antiterminator element in the 5′-untranslated mRNA leader region and precluding formation of a thermodynamically more stable terminator element. Stabilization occurs when the tRNA acceptor end base pairs with the first four nucleotides in the seven nucleotide bulge of the highly conserved antiterminator element. The significance of the conservation of the antiterminator bulge nucleotides that do not base pair with the tRNA is unknown, but they are required for optimal function. In vitro selection was used to determine if the isolated antiterminator bulge context alone dictates the mode in which the tRNA acceptor end binds the bulge nucleotides. No sequence conservation beyond complementarity was observed and the location was not constrained to the first four bases of the bulge. The results indicate that formation of a structure that recognizes the tRNA acceptor end in isolation is not the determinant driving force for the high phylogenetic sequence conservation observed within the antiterminator bulge. Additional factors or T box leader features more likely influenced the phylogenetic sequence conservation.
机译:许多细菌利用核糖开关转录调节来监测重要代谢物或效应分子的细胞水平并对其做出适当反应。 T盒转录抗终止核糖开关通过特异性稳定5'-非翻译的mRNA前导区中的抗终止子元件并阻止热力学上更稳定的终止子元件的形成,对同源的不带电荷的tRNA作出反应。当tRNA受体末端碱基与高度保守的抗终止子元件的七个核苷酸凸起中的前四个核苷酸配对时,就会发生稳定化。未知与tRNA不碱基配对的抗终止子突出核苷酸的保守意义,但是它们是实现最佳功能所必需的。体外选择被用于确定分离的抗终止子凸起背景是否单独决定了tRNA受体末端结合凸起核苷酸的模式。没有观察到超过互补性的序列保守性,并且该位置不限于凸起的前四个碱基。结果表明,分离地识别tRNA受体末端的结构的形成不是在抗终止子凸起中观察到的高度系统进化序列保守性的决定性驱动力。其他因素或T盒前导特征更可能影响系统发育序列的保守性。

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