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Classification of G-Quadruplex DNA on the Basis of the Quadruplex Twist Angle and Planarity of G-Quartets

机译:基于四重扭转角和G四重平面的G四重DNA的分类

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摘要

The present work is devoted to the analysis of the G-quadruplex DNA structure using the bioinformatics method. The interest towards quadruplex DNAs is determined by their involvement in the functioning of telomeres and onco-promoters as well as by the possibility to create on their basis aptamers and nanostructures. Here, we present an algorithm for a general analysis of the polymorphism of the G-quadruplex structure from the data bank PDB using original parameters. 74 structures were grouped according to the following parameters: the number of DNA strands, the number of G-quartets, and the location and orientation of the connecting loops. Two quantitative parameters were used to describe the quadruplex structure: the twist angle between two adjacent quartets (analogous to that for the complementary pair in the duplex DNA) and the quartet planarity (an original parameter). The distribution patterns of these values are specific for each group of quadruplex structures and are dependent upon the type of connecting loops used (diagonal, lateral or propeller). The tetramolecular loopless parallel quadruplex was used as a comparison template. The lateral loops introduce the strongest distortion into the structure of quadruplexes: the values of the twist angles are the lowest and are not typical for the other quadruplex groups. The loops of the diagonal type introduce much weaker deformation into quadruplexes; the structures with propeller loops are characterized by the optimum geometry of G-quartets. Hence, the correlation between the twist angle and the tension in the structure of quadruplex DNA is revealed.
机译:目前的工作致力于使用生物信息学方法分析G-四链体DNA结构。对四链体DNA的兴趣取决于它们是否参与端粒和癌基因启动子的功能,以及是否有可能基于其构建适体和纳米结构。在这里,我们提出了一种使用原始参数对数据库PDB中的G-四联体结构的多态性进行一般分析的算法。根据以下参数对74个结构进行了分组:DNA链数,G四联体数以及连接环的位置和方向。使用两个定量参数来描述四重结构:两个相邻四重态之间的扭曲角(类似于双链DNA中互补对的扭曲角)和四重态平面度(原始参数)。这些值的分布模式对于每组四联体结构都是特定的,并且取决于所使用的连接环的类型(对角线,侧向或螺旋桨)。四分子无环平行四链体用作比较模板。横向回路将最强的失真引入到四重体结构中:扭曲角的值最低,对于其他四重体组而言则不常见。对角线型的回路将弱得多的变形引入四重体。具有螺旋桨环的结构的特点是G四重奏的最佳几何形状。因此,揭示了扭转角与四链DNA结构中的张力之间的相关性。

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