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Folding a stable RNA pseudoknot through rearrangement of two hairpin structures

机译:通过两个发夹结构的重排折叠稳定的RNA假结

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Folding messenger RNA into specific structures is a common regulatory mechanism involved in translation. In Escherichia coli, the operator of the rpsO gene transcript folds into a pseudoknot or double-hairpin conformation. S15, the gene product, binds only to the pseudoknot, thereby repressing its own synthesis when it is present in excess in the cell. The two RNA conformations have been proposed to exist in equilibrium. However, it remained unclear how structural changes can be achieved between these two topologically distinct conformations. We used optical tweezers to study the structural dynamics and rearrangements of the rpsO operator RNA at the single-molecule level. We discovered that the two RNA structures can be interchanged spontaneously and the pseudoknot can exist in conformations that exhibit various levels of stability. Conversion from the double hairpin to a pseudoknot through potential hairpin-hairpin interactions favoured the high-stability conformation. By contrast, mutations that blocked the formation of a hairpin typically resulted in alternative low-stability pseudoknots. These results demonstrate that specific tertiary interactions of RNA can be established and modulated based on the interactions and rearrangements between secondary structural components. Our findings provide new insight into the RNA folding pathway that leads to a regulatory conformation for target protein binding.
机译:将信使RNA折叠成特定结构是翻译中涉及的常见调节机制。在大肠杆菌中,rpsO基因转录本的操纵子折叠成假结或双发夹构象。基因产物S15仅与假结结合,从而在细胞中过量存在时抑制其自身的合成。已经提出两个RNA构象平衡存在。然而,仍然不清楚如何在这两个拓扑结构不同的构象之间实现结构改变。我们用光镊子研究了rpsO操纵子RNA在单分子水平上的结构动力学和重排。我们发现,两个RNA结构可以自发互换,假结可以以显示各种稳定性水平的构象存在。通过潜在的发夹-发夹相互作用从双发夹转变为假结有利于高稳定性构象。相比之下,阻止发夹形成的突变通常会导致替代性的低稳定性假结。这些结果表明,可以基于二级结构成分之间的相互作用和重排来建立和调节RNA的特定三级相互作用。我们的发现为RNA折叠途径提供了新的见解,该途径可导致靶蛋白结合的调控构象。

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