首页> 外文期刊>Journal of Biomolecular Structure and Dynamics >The significant role of the intermolecular CHMIDLINE HORIZONTAL ELLIPSISO/N hydrogen bonds in governing the biologically important pairs of the DNA and RNA modified bases: a comprehensive theoretical investigation
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The significant role of the intermolecular CHMIDLINE HORIZONTAL ELLIPSISO/N hydrogen bonds in governing the biologically important pairs of the DNA and RNA modified bases: a comprehensive theoretical investigation

机译:分子间Chmidline水平椭圆形iso / n氢键在控制DNA和RNA改性基础的生物学重要性对中的显着作用:综合理论研究

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This paper is a logical continuation of the theoretical survey of the CHMIDLINE HORIZONTAL ELLIPSISO/N specific contacts in the nucleobase pairs using a wide arsenal of the modern methods, which was initiated in our previous study [J. Biomol. Struct. & Dynam., 2014, 32, 993-1022]. It was established that 34 CHMIDLINE HORIZONTAL ELLIPSISO and 7 CHMIDLINE HORIZONTAL ELLIPSISN interactions, that were detected by quantum-chemical calculations in the 39 biologically important pairs involving modified nucleobases, completely satisfy all geometrical, vibrational, electron-topological, in particular Bader's and "two-molecule" Koch and Popelier's, Grunenberg's compliance constants theory and natural bond orbital criteria indicating that they can be identified as true H-bonds. The geometrical criteria of the H-bond formation are fulfilled for all considered CHMIDLINE HORIZONTAL ELLIPSISO/N H-bonds without any exception. It was shown that the classical rule of the stretching vibration shifts does not work in the ~95% cases of the CHMIDLINE HORIZONTAL ELLIPSISO/N H-bonds. Furthermore, significant increase in the frequency of the out-of-plane deformation modes gamma(CH) under the formation of CHMIDLINE HORIZONTAL ELLIPSISO/N H-bonds and corresponding changes of their intensities can be also considered as reliable indicators of the H-bonding. We revealed high linear mutual correlations between the electron density, Laplacian of the electron density, H-bond energy at the (3, -1) bond critical points of the CHMIDLINE HORIZONTAL ELLIPSISO/N H-bonds, and different physico-chemical parameters of the CHMIDLINE HORIZONTAL ELLIPSISO/N H-bonds. We suggested that the electron density rho and the interaction energy E-(2) of the lone orbital pairs are the most reliable descriptors of the H-bonding. The linear dependence of the H-bond energy E-CHMIDLINE HORIZONTAL ELLIPSISO/N on the electron density rho was established: E-CHMIDLINE HORIZONTAL ELLIPSISO = 250.263 center dot rho - .380/258.255 center dot rho - .396 and E-CHMIDLINE HORIZONTAL ELLIPSISN = 196.800 center dot rho - .172/268.559 center dot rho - .703 obtained at the density functional theory (DFT)/Moller-Plesset (MP2) levels of theory, respectively. The studies of the interaction energies show that the contribution of the CHMIDLINE HORIZONTAL ELLIPSISO and CHMIDLINE HORIZONTAL ELLIPSISN H-bonds into the base pairs stability varies from 3.0/4.2 to 35.1/31.2% and from 3.0/4.3 to 44.4/46.5% at the DFT/MP2 levels of theory, accordingly. Energy decomposition analysis performed for all base pairs involving canonical and modified nucleobases defines the electrostatic attraction and Pauli repulsion as dominant stabilizing forces in all complexes. This observation was additionally confirmed by the results of the QTAIM delocalization indexes analysis. The studies reported here advance our understanding of the biological role of the weak CHMIDLINE HORIZONTAL ELLIPSISO/N H-bonds, that dictates the requirements for the structural and dynamical similarity of the canonical and mismatched pairs with Watson-Crick (WC) geometry, which facilitates their enzymatic incorporation into the DNA double helix during DNA replication. Thus, these H-bonds in the base pairs with WC geometry may be also considered as "the last drop" at the transmission of the electronic signal that launches the chemical incorporation of the incoming nucleoside triphosphate into DNA.
机译:本文是使用现代方法的宽arsenal在我们之前的研究中启动的核碱基对中核碱基对中的Chmidline水平椭圆形SO / n个特异性触点的理论调查的逻辑延续。在我们之前的研究中启动了[J.生物酚。结构。 &DIVIN。,2014,32,993-1022]。建立了34个Chmidline水平椭圆形iso和7个Chmidline水平椭圆形相互作用,其在涉及修饰的核碱基的39个生物学上重要性对中的量子化学计算来检测,完全满足所有几何,振动,电子拓扑,特别是獾和“两个-molecule“Koch和Popelier,Grunenberg的合规常数理论和天然粘合轨道标准表明它们可以被识别为真正的H键。对于所有考虑的Chmidline水平椭圆形iso / n H键,满足了H键形成的几何标准,而无需任何例外。结果表明,拉伸振动偏移的经典规则在〜95%的Chmidline水平椭圆形iso / n H键中不起作用。此外,在形成Chmidline水平椭圆形iso / n H键的形成下,平面异常变形模式γ(CH)的频率显着增加,并且它们的强度的相应变化也可以被认为是H键合的可靠指标。我们揭示了在Chmidline水平椭圆形SISO / N H键的(3,-1)键临界点的电子密度,电子密度的Laplacian之间的高线性相互关联,H键键临界点,以及不同的物理化学参数chmidline水平椭圆iso / n h键。我们建议孤立轨道对的电子密度RHO和相互作用E-(2)是H键合最可靠的描述符。建立了H键能E-Chmidline水平椭圆形的线性依赖性 - E-Chmidline水平椭圆形iso = 250.263中央点RHO - .380 / 258.255中心DOT RHO - .396和e-Chmidline水平省号= 196.800中心点RHO - .172 / 268.559中央点RHO - .703分别获得的密度泛函理论(DFT)/ Moller-Plesset(MP2)理论水平。相互作用能量的研究表明,Chmidline水平椭圆形iso和Chmidline水平椭圆形H键进入碱基对稳定性的贡献在DFT的3.0 / 4.2至35.1 / 31.2%和3.0 / 4.3至44.4 / 46.5%之间变化/ MP2理论级别。对涉及规范和修饰的核碱基的所有碱基对进行能量分解分析使静电吸引和保罗拉排斥作为所有复合物中的主要稳定力。通过QtaiS临床化指数分析的结果另外证实了这种观察。这里的研究报告了我们对弱Chmidline水平椭圆形iso / n H键的生物学作用的理解,这决定了促进了Watson-Crick(WC)几何的规范和不匹配对的结构和动态相似性的要求在DNA复制期间,将它们酶促掺入DNA双螺旋中。因此,具有WC几何形状的碱基对中的这些H键也可以被认为是在传输电子信号的传输时的“最后一滴”,其将进入的核苷三磷酸的化学掺入到DNA中。

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