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二核苷酸TpT及其2'-O-甲基类似物具有不同的主链构象和柔韧性,但具有相似的堆积几何形状。

Dinucleotide TpT and its 2'-O-Me analogue possess different backbone conformations and flexibilities but similar stacked geometries.

作者信息

Santini Guillaume P H, Pakleza Christophe, Auffinger Pascal, Moriou Céline, Favre Alain, Clivio Pascale, Cognet Jean A H

机构信息

Laboratoire de Biophysique Moléculaire, Cellulaire et Tissulaire, UMR 7033 CNRS, Université Pierre et Marie Curie, Genopole Campus 1, RN7, Evry 91030, France.

出版信息

J Phys Chem B. 2007 Aug 9;111(31):9400-9. doi: 10.1021/jp0728656. Epub 2007 Jul 11.

Abstract

UV irradiation at 254 nm of 2'-O,5-dimethyluridylyl(3'-5')-2'-O,5-dimethyluridine (1a) and of natural thymidylyl(3'-5')thymidine (1b) generates the same photoproducts (CPD and (6-4)PP; responsible for cell death and skin cancer). The ratios of quantum yields of photoproducts obtained from 1a (determined herein) to that from 1b are in a proportion close to the approximately threefold increase of stacked dinucleotides for 1a compared with those of 1b (from previous circular dichroism results). 1a and 1b however are endowed with different predominant sugar conformations, C3'-endo (1a) and C2'-endo (1b). The present investigation of the stacked conformation of these molecules, by unrestrained state-of-the-art molecular simulation in explicit solvent and salt, resolves this apparent paradox and suggests the following main conclusions. Stacked dinucleotides 1a and 1b adopt the main characteristic features of a single-stranded A and B form, respectively, where the relative positions of the backbone and the bases are very different. Unexpectedly, the geometry of the stacking of two thymine bases, within each dinucleotide, is very similar and is in excellent agreement with photochemical and circular dichroism results. Analyses of molecular dynamics trajectories with conformational adiabatic mapping show that 1a and 1b explore two different regions of conformational space and possess very different flexibilities. Therefore, even though their base stacking is very similar, these molecules possess different geometrical, mechanical, and dynamical properties that may account for the discrepancy observed between increased stacking and increased photoproduct formations. The computed average stacked conformations of 1a and 1b are well-defined and could serve as starting models to investigate photochemical reactions with quantum dynamics simulations.

摘要

用254nm的紫外线照射2'-O,5-二甲基尿苷基(3'-5')-2'-O,5-二甲基尿苷(1a)和天然胸苷基(3'-5')胸苷(1b)会产生相同的光产物(环丁烷嘧啶二聚体和(6-4)光产物;导致细胞死亡和皮肤癌)。从1a获得的光产物量子产率(本文测定)与从1b获得的光产物量子产率之比,与1b相比,1a的堆积二核苷酸增加了约三倍(根据先前的圆二色性结果)。然而,1a和1b具有不同的主要糖构象,分别为C3'-内型(1a)和C2'-内型(1b)。本研究通过在明确的溶剂和盐中进行无约束的先进分子模拟,研究了这些分子的堆积构象,解决了这一明显的矛盾,并得出以下主要结论。堆积的二核苷酸1a和1b分别采用单链A和B形式的主要特征,其中主链和碱基的相对位置非常不同。出乎意料的是,每个二核苷酸内两个胸腺嘧啶碱基的堆积几何形状非常相似,并且与光化学和圆二色性结果非常吻合。通过构象绝热映射对分子动力学轨迹的分析表明,1a和1b探索了构象空间的两个不同区域,并且具有非常不同的柔韧性。因此,尽管它们的碱基堆积非常相似,但这些分子具有不同的几何、力学和动力学性质,这可能解释了在堆积增加和光产物形成增加之间观察到的差异。计算得到的1a和1b的平均堆积构象定义明确,可以作为用量子动力学模拟研究光化学反应的起始模型。

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