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重新审视核酸碱基的平面性:糖基氮上的嘧啶环化作用在嘌呤碱基中由糖苷扭转的方向调节。

Revisiting the planarity of nucleic acid bases: Pyramidilization at glycosidic nitrogen in purine bases is modulated by orientation of glycosidic torsion.

机构信息

Institute of Organic Chemistry and Biochemistry AS CR, v.v.i. Flemingovo namesti 2, CZ, 16610 Prague, Czech Republic.

出版信息

Nucleic Acids Res. 2009 Nov;37(21):7321-31. doi: 10.1093/nar/gkp783.

Abstract

We describe a novel, fundamental property of nucleobase structure, namely, pyramidilization at the N1/9 sites of purine and pyrimidine bases. Through a combined analyses of ultra-high-resolution X-ray structures of both oligonucleotides extracted from the Nucleic Acid Database and isolated nucleotides and nucleosides from the Cambridge Structural Database, together with a series of quantum chemical calculations, molecular dynamics (MD) simulations, and published solution nuclear magnetic resonance (NMR) data, we show that pyramidilization at the glycosidic nitrogen is an intrinsic property. This property is common to isolated nucleosides and nucleotides as well as oligonucleotides-it is also common to both RNA and DNA. Our analysis suggests that pyramidilization at N1/9 sites depends in a systematic way on the local structure of the nucleoside. Of note, the pyramidilization undergoes stereo-inversion upon reorientation of the glycosidic bond. The extent of the pyramidilization is further modulated by the conformation of the sugar ring. The observed pyramidilization is more pronounced for purine bases, while for pyrimidines it is negligible. We discuss how the assumption of nucleic acid base planarity can lead to systematic errors in determining the conformation of nucleotides from experimental data and from unconstrained MD simulations.

摘要

我们描述了核碱基结构的一个新的基本性质,即在嘌呤和嘧啶碱基的 N1/9 位的金字塔化。通过对核酸数据库中提取的寡核苷酸以及剑桥结构数据库中分离的核苷酸和核苷的超高分辨率 X 射线结构的综合分析,以及一系列量子化学计算、分子动力学(MD)模拟和已发表的溶液核磁共振(NMR)数据,我们表明糖苷氮上的金字塔化是一种内在性质。这种性质不仅存在于分离的核苷酸碱基中,也存在于寡核苷酸中,它在 RNA 和 DNA 中都是普遍存在的。我们的分析表明,N1/9 位的金字塔化在核苷酸碱基的局部结构上以系统的方式依赖。值得注意的是,在糖苷键重新定向时,金字塔化会发生立体反转。糖环的构象进一步调节了金字塔化的程度。观察到的金字塔化在嘌呤碱基中更为明显,而在嘧啶碱基中则可以忽略不计。我们讨论了假设核酸碱基平面性如何会导致从实验数据和无约束 MD 模拟中确定核苷酸构象时出现系统误差。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6de5/2790901/e2c1c04ef670/gkp783f1.jpg

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