首页> 外文期刊>Journal of Molecular Biology >A large collapsed-state RNA can exhibit simple exponential single-molecule dynamics.
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A large collapsed-state RNA can exhibit simple exponential single-molecule dynamics.

机译:大的塌陷状态RNA可以表现出简单的指数单分子动力学。

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摘要

The process of large RNA folding is believed to proceed from many collapsed structures to a unique functional structure requiring precise organization of nucleotides. The diversity of possible structures and stabilities of large RNAs could result in non-exponential folding kinetics (e.g. stretched exponential) under conditions where the molecules have not achieved their native state. We describe a single-molecule fluorescence resonance energy transfer (FRET) study of the collapsed-state region of the free energy landscape of the catalytic domain of RNase P RNA from Bacillus stearothermophilus (C(thermo)). Ensemble measurements have shown that this 260 residue RNA folds cooperatively to its native state at >or=1 mM Mg(2+), but little is known about the conformational dynamics at lower ionic strength. Our measurements of equilibrium conformational fluctuations reveal simple exponential kinetics that reflect a small number of discrete states instead of the expected inhomogeneous dynamics. The distributionof discrete dwell times, collected from an "ensemble" of 300 single molecules at each of a series of Mg(2+) concentrations, fit well to a double exponential, which indicates that the RNA conformational changes can be described as a four-state system. This finding is somewhat unexpected under [Mg(2+)] conditions in which this RNA does not achieve its native state. Observation of discrete well-defined conformations in this large RNA that are stable on the seconds timescale at low [Mg(2+)] (<0.1 mM) suggests that even at low ionic strength, with a tremendous number of possible (weak) interactions, a few critical interactions may produce deep energy wells that allow for rapid averaging of motions within each well, and yield kinetics that are relatively simple.
机译:大RNA折叠的过程被认为是从许多折叠的结构发展为需要精确组织核苷酸的独特功能结构。大分子RNA的可能结构和稳定性的多样性可能会在分子尚未达到其天然状态的条件下导致非指数折叠动力学(例如拉伸指数)。我们描述了从嗜热脂肪芽孢杆菌(C(thermo))的RNase P RNA的催化域的自由能景观的塌陷状态区域的单分子荧光共振能量转移(FRET)研究。集合测量显示,这260个残基RNA在>或= 1 mM Mg(2+)时可折叠至其天然状态,但对较低离子强度的构象动力学了解甚少。我们对平衡构象波动的测量揭示了反映少量离散状态的简单指数动力学,而不是预期的不均匀动力学。从一系列Mg(2+)浓度的300个单分子的“集合体”中收集的离散停留时间的分布非常适合于双指数,这表明RNA构象变化可以描述为四-国体。在[Mg(2+)]条件下此RNA无法达到其天然状态时,此发现有些出乎意料。在这种大RNA中观察到离散的明确定义的构象,这些构象在低[Mg(2+)](<0.1 mM)的情况下可在数秒的时间内保持稳定,这表明即使在低离子强度下,也存在大量可能的(弱)相互作用,一些关键的相互作用可能会产生深能量井,从而使每个井中运动的快速平均化,并产生相对简单的动力学。

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