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Structural characteristics of 2-O-(2-methoxyethyl)-modified nucleic acids from molecular dynamics simulations.

机译:从分子动力学模拟的2-O-(2-甲氧基乙基)修饰的核酸的结构特征。

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摘要

The structure and physical properties of 2'-sugar substituted O -(2-methoxyethyl) (MOE) nucleic acids have been studied using molecular dynamics simulations. Nanosecond simulations on the duplex MOE[CCAACGTTGG]-r[CCAACGUUGG] in aqueous solution have been carried out using the particle mesh Ewald method. Parameters for the simulation have been developed from ab initio calculations on dimethoxyethyl fragments in a manner consistent with the AMBER 4.1 force field database. The simulated duplex is compared with the crystal structure of the self-complementary duplex d[GCGTATMOEACGC]2, which contains a single modification in each strand. Structural details from each sequence have been analyzed to rationalize the stability imparted by substitution with 2'- O -(2-methoxyethyl) side chains. Both duplexes have an A-form structure, as indicated by several parameters, most notably a C3' endo sugar pucker in all residues. The simulated structure maintains a stable A-form geometry throughout the duration of the simulation with an average RMS deviation of 2.0 A from the starting A-form structure. The presence of the 2' substitution appears to lock the sugars in the C3' endo conformation, causing the duplex to adopt a stable A-form geometry. The side chains themselves have a fairly rigid geometry with trans , trans , gauche +/- and trans rotations about the C2'-O2', O2'-CA', CA'-CB' and CB'-OC' bonds respectively.
机译:已经使用分子动力学模拟研究了2'-糖取代的O-(2-甲氧基乙基)(MOE)核酸的结构和物理性质。使用粒子网格Ewald方法对水溶液中的双相MOE [CCAACGTTGG] -r [CCAACGUUGG]进行了纳秒级模拟。通过与AMBER 4.1力场数据库一致的方式对二甲氧基乙基片段进行从头计算得出了用于仿真的参数。将模拟的双链体与自身互补双链体d [GCGTATMOEACGC] 2的晶体结构进行比较,该链在每条链中均包含一个修饰。已经分析了来自每个序列的结构细节以合理化通过用2'-O-(2-甲氧基乙基)侧链取代而赋予的稳定性。如几个参数所示,两个双链体均具有A型结构,最显着的是所有残基中的C3'内糖折叠。模拟的结构在整个模拟过程中保持稳定的A型几何形状,与起始A型结构的平均RMS偏差为2.0A。 2'取代的出现似乎将糖锁定在C3'内构象中,从而导致双链体采用稳定的A型几何结构。侧链本身具有相当刚性的几何结构,具有分别绕C2'-O2',O2'-CA',CA'-CB'和CB'-OC'键的反式,反式,gauche +/-和反式旋转。

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