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Probing the kinetic and thermodynamic consequences of the tetraloop/tetraloop receptor monovalent ion-binding site in P4–P6 RNA by smFRET

机译:通过smFRET探测P4-P6 RNA中四环/四环受体单价离子结合位点的动力学和热力学后果

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摘要

Structured RNA molecules play roles in central biological processes and understanding the basic forces and features that govern RNA folding kinetics and thermodynamics can help elucidate principles that underlie biological function. Here we investigate one such feature, the specific interaction of monovalent cations with a structured RNA, the P4–P6 domain of the Tetrahymena ribozyme. We employ single molecule FRET (smFRET) approaches as these allow determination of folding equilibrium and rate constants over a wide range of stabilities and thus allow direct comparisons without the need for extrapolation. These experiments provide additional evidence for specific binding of monovalent cations, Na+ and K+, to the RNA tetraloop–tetraloop receptor (TL–TLR) tertiary motif. These ions facilitate both folding and unfolding, consistent with an ability to help order the TLR for binding and further stabilize the tertiary contact subsequent to attainment of the folding transition state.
机译:结构化的RNA分子在核心生物学过程中发挥作用,了解控制RNA折叠动力学和热力学的基本力和特征可以帮助阐明生物学功能的原理。在这里,我们研究一种这样的特征,即单价阳离子与结构化RNA(四膜虫核酶的P4-P6域)的特异性相互作用。我们采用单分子FRET(smFRET)方法,因为这些方法可以确定广泛的稳定性范围内的折叠平衡和速率常数,因此无需外推即可进行直接比较。这些实验为单价阳离子Na + 和K + 与RNA四环-四环受体(TL-TLR)三次基序的特异性结合提供了额外的证据。这些离子促进折叠和展开,这与帮助订购TLR进行结合并在达到折叠过渡状态之后进一步稳定第三接触的能力相一致。

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