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Improvementof DNA and RNA Sugar Pucker Profiles fromSemiempirical Quantum Methods

机译:改善的DNA和RNA糖褶皱图半经验量子方法

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摘要

Neglect of diatomic differential overlap (NDDO) and self-consistent density-functional tight-binding (SCC-DFTB) semiempirical models commonly employed in combined quantum mechanical/molecular mechanical simulations fail to adequately describe the deoxyribose and ribose sugar ring puckers. This failure limits the application of these methods to RNA and DNA systems. In this work, we provide benchmark ab initio gas-phase two-dimensional potential energy scans of the RNA and DNA sugar puckering. The benchmark calculations are compared with semiempirical models. Pucker corrections are introduced into the semiempirical models via B-spline interpolation of the potential energy difference surface relative to the benchmark data. The corrected semiempirical models are shown to well reproduce the ab initio puckering profiles. Furthermore, we demonstrate that the uncorrected semiempirical models do not usually produce a transition state between the A-form and B-form sugar puckers, but the ab initio transition state is reproduced when the B-spline correction is used.
机译:忽略了双原子微分重叠(NDDO)和自洽的密度泛函紧密结合(SCC-DFTB)半经验模型,这些模型通常在组合量子力学/分子力学模拟中使用,无法充分描述脱氧核糖和核糖糖环褶皱。这种失败限制了这些方法在RNA和DNA系统中的应用。在这项工作中,我们提供了RNA和DNA糖褶皱的基准从头开始气相二维势能扫描。将基准计算与半经验模型进行比较。通过相对于基准数据的势能差表面的B样条插值,将Pucker校正引入半经验模型。校正后的半经验模型显示可以很好地再现从头算起的皱纹。此外,我们证明了未经校正的半经验模型通常不会在A形和B形糖皱褶之间产生过渡状态,但是当使用B样条校正时会重现从头开始的过渡状态。

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