首页> 外文OA文献 >Two-Dimensional \u3csup\u3e1\u3c/sup\u3eH and \u3csup\u3e31\u3c/sup\u3eP NMR Spectra and Restrained Molecular Dynamics Structure of an Oligodeoxyribonucleotide Duplex Refined via a Hybrid Relaxation Matrix Procedure
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Two-Dimensional \u3csup\u3e1\u3c/sup\u3eH and \u3csup\u3e31\u3c/sup\u3eP NMR Spectra and Restrained Molecular Dynamics Structure of an Oligodeoxyribonucleotide Duplex Refined via a Hybrid Relaxation Matrix Procedure

机译:通过混合弛豫矩阵程序精制的寡脱氧核糖核苷酸双链体的二维核素和核素光谱和限制的分子动力学结构二维\ u3csup \ u3e1 \ u3c / sup \ u3eH和\ u3csup \ u3e31 \ u3c / sup \ u3ep核磁共振谱和限制的分子动力学结构

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摘要

Assignment of the 1H and 31P resonances of a decamer DNA duplex, d(CGCTTAAGCG)2 was deter-mined by two-dimensional COSY, NOESY, and 1H-31P Pure Absorption phase Constant time (PAC) heteronuclear correlation spectroscopy. The solution structure of the decamer was calculated by an iterative hybrid relaxation matrix method combined with NOESY-distance restrained molecular dynamics. The distances from the 2D NOESY spectra were calculated from the relaxation rate matrix which were evaluated from a hybrid NOESY volume matrix comprising elements from the experi-ment and those calculated from an initial structure. The hybrid matrix-derived distances were then used in a restrained molecular dynamics procedure to obtain a new structure that better approxi-mates the NOESY spectra. The resulting partially refined structure was then used to calculate an improved theoretical NOESY volume matrix which is once again merged with the experimental ma-trix until refinement is complete. JH3′–P coupling constants for each of the phosphates of the decamer were obtained from 1H-31P J-resolved selective proton flip 2D spectra. By using a modified Karplus relationship the C4′-C3′-O3′-P torsional angles (ε) were obtained. Comparison of the 31P chemical shifts and JH3′–P coupling constants of this sequence has allowed a greater insight into the various factors responsible for 31P chemical shift variations in oligonucleotides. It also provides an important probe of the sequence-dependent structural variation of the deoxyribose phosphate backbone of DNA in solution. These correlations are consistent with the hypothesis that changes in local helical structure perturb the deoxyribose phosphate backbone. The variation of the 31P chemical shift, and the degree of this variation from one base step to the next is proposed as a potential probe of local helical conformation within the DNA double helix. The pattern of calculated ε and ζ torsional angles from the restrained molecular dynamics refinement agrees quite well with the measured JH3′–P coupling constants. Thus, the local helical parameters determine the length of the phosphodiester back-bone which in turn constrains the phosphate in various allowed conformations.
机译:decamer DNA双链体d(CGCTTAAGCG)2的1H和31P共振的分配由二维COSY,NOESY和1H-31P纯吸收相恒定时间(PAC)异核相关光谱法确定。通过迭代混合弛豫矩阵方法结合NOESY距离约束的分子动力学计算了decamer的溶液结构。从弛豫率矩阵计算到二维NOESY光谱的距离,弛豫率矩阵是从混合NOESY体积矩阵评估的,该矩阵包含实验元素和初始结构计算的元素。然后,将混合矩阵得出的距离用于约束分子动力学过程中,以获得更好地近似于NOESY光谱的新结构。然后将所得的部分精制结构用于计算改进的理论NOESY体积矩阵,将其与实验矩阵再次合并,直至精制完成。从1H-31P J解析的选择性质子翻转2D光谱中获得了十聚体的每种磷酸盐的JH3'-P耦合常数。通过使用修正的Karplus关系式,获得C4'-C3'-O3'-P扭转角(ε)。比较此序列的31P化学位移和JH3'-P耦合常数,可以更深入地了解导致寡核苷酸中31P化学位移变化的各种因素。它还提供了溶液中DNA脱氧核糖磷酸骨架的序列依赖性结构变异的重要探针。这些相关性与以下假设相符:局部螺旋结构的变化扰乱了脱氧核糖磷酸骨架。 31 P化学位移的变化以及从一个基本步骤到下一个基本步骤的变化程度被提议作为DNA双螺旋结构中局部螺旋构象的潜在探针。通过限制分子动力学细化计算出的ε和ζ扭转角的模式与测得的JH3'-P耦合常数非常吻合。因此,局部螺旋参数确定了磷酸二酯主链的长度,其进而将磷酸盐限制在各种允许的构象中。

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