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Influence of static and dynamic bends on the birefringence decay profile of RNA helices: Brownian dynamics simulations.

机译:静态和动态弯曲对RNA螺旋双折射衰减曲线的影响:布朗动力学模拟。

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摘要

Bends in nucleic acid helices can be quantified in a transient electric birefringence (TEB) experiment from the ratio of the terminal decay times of the bent molecule and its fully duplex counterpart (tau-ratio method). The apparent bend angles can be extracted from the experimental tau-ratios through the application of static (equilibrium-ensemble) hydrodynamic models; however, such models do not properly address the faster component(s) of the birefringence decay profile, which can represent up to 80% of the total birefringence signal for large band angles. To address this latter issue, the relative amplitudes of the components in the birefringence decay profile have been analyzed through a series of Brownian dynamics (BD) simulations. Decay profiles have been simulated for three-, five-, and nine-bead models representing RNA molecules with central bends of 30 degrees, 60 degrees, and 90 degrees, and with various degrees of associated angle dispersion. The BD simulations are in close agreement with experimental results for the fractional amplitudes, suggesting that both amplitudes and terminal tau-ratios can be used as a measure of the magnitudes of bends in the helix axis. Although the current results indicate that it is generally not possible to distinguish between relatively fixed and highly flexible bends from single tau-ratio measurements, because they can lead to similar reductions in terminal decay time and amplitude, measurements of the dependence of the fractional amplitudes on helix length may afford such a distinction.
机译:可以在瞬态电双折射(TEB)实验中根据弯曲分子与其完全双链体的末端衰变时间的比率(tau-ratio方法)来量化核酸螺旋的弯曲。可以通过应用静态(平衡系综)流体动力学模型从实验的tau-ratio中提取表观弯曲角。然而,这样的模型不能正确地解决双折射衰减曲线的一个或多个更快的分量,对于较大的频带角度,该分量最多可以代表总双折射信号的80%。为了解决后一个问题,已经通过一系列布朗动力学(BD)仿真分析了双折射衰减曲线中各分量的相对幅度。已经针对代表三个具有30度,60度和90度中心弯曲的RNA分子的RNA分子的三珠,五珠和九珠模型模拟了衰变曲线。 BD模拟与分数振幅的实验结果非常吻合,表明振幅和末端tau-ratio都可以用作衡量螺旋轴弯曲幅度的量度。尽管目前的结果表明,通常无法通过单个tau-ratio测量值来区分相对固定的弯曲度和高度柔性的弯曲度,但因为它们会导致终端衰减时间和幅度的相似减小,因此,分数幅度对螺旋长度可以提供这样的区别。

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