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Stacking-unstacking of the dinucleoside monophosphate guanylyl-35-uridine studied with molecular dynamics.

机译:用分子动力学研究了二核苷单磷酸鸟苷-35-尿苷的堆积-堆积。

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摘要

Molecular dynamics simulations were carried out on two conformations of the dinucleoside monophosphate guanylyl-3',5'-uridine (GpU) in aqueous solution with one sodium counterion. One stacked conformation and one with the C3'-O3'-P-O5' backbone torsion angle twisted 180 degrees to create an unstacked conformation. We observed a relatively stable behavior of the stacked conformation, which remained stacked throughout the simulation, whereas the unstacked conformation showed major changes in the backbone torsion and glycosidic angles. During the simulation the unstacked conformation transformed into a more stacked form and then back again to an unstacked one. The calculated correlation times for rotational diffusion from the molecular dynamics simulations are in agreement with fluorescence anisotropy and nuclear magnetic resonance data. As expected, the correlation times for rotational diffusion of the unstacked conformation were observed to be longer than for the stacked conformation. The 2'OH group may contribute in stabilizing the stacked conformation, where the O2'-H...O4' hydrogen bond occurred in 82.7% of the simulation.
机译:分子动力学模拟是在具有一个抗衡钠离子的水溶液中对两种构型的二核苷单磷酸胍基-3',5'-尿苷(GpU)进行的。一种堆叠构象,另一种具有C3'-O3'-P-O5'主链扭转角,扭曲180度以创建未堆叠构象。我们观察到堆叠构象的相对稳定的行为,在整个模拟过程中仍保持堆叠,而未堆叠构象显示主链扭转和糖苷角发生了重大变化。在模拟过程中,未堆叠的构象转换为更堆叠的形式,然后再次返回到未堆叠的构象。从分子动力学模拟计算得出的旋转扩散相关时间与荧光各向异性和核磁共振数据一致。如所预期的,观察到未堆叠构象的旋转扩散的相关时间长于堆叠构象的相关时间。 2'OH基团可能有助于稳定堆叠构象,其中O2'-H ... O4'氢键出现在模拟的82.7%中。

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