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Sequence effects on energetic and structural properties of phosphorothioate DNA: a molecular modelling study.

机译:序列对硫代磷酸酯DNA的能量和结构性质的影响:分子建模研究。

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Phosphorothioate (PS) oligonucleotides constitute a new class of potent drugs, resulting from the replacement of one anionic oxygen of the phosphodiester backbone by one sulphur atom. This replacement confers chirality to the phosphorus atom (PSS or PSR) and alters the energetic, structural and biological properties of B-DNA. These properties were assessed by molecular mechanics calculations on a set of regular sequences, d(YR)8.d(YR)8 and d(RR)8.d(YY)8 (R, purine; Y, pyrimidine). Results indicated: (i) destabilisation of both the PS(R)and the PSS oligomers, the loss of total energy being mainly due to a variation in the electrostatic term; (ii) an additional chirality effect, due to van der Waals and backbone angle energies, larger for PSS oligomers than for PSR oligomers; (iii) a clear sequence effect on stability, particularly from the base immediately preceding the PS group. Even though the PS group alters the stability of oligomers, it does not significantly modify the conformation. Altogether, our molecular modelling data parallel the available experimental data. Our results reveal that sequence effects on the energetic properties of PS oligomers are local and additive. Therefore, studies of the set of the 10 unique double-stranded modified dinucleotide steps included in regular oligomers could be used to predict the behaviour of any double-stranded PS-DNA.
机译:硫代磷酸酯(PS)寡核苷酸构成了一类新型的强效药物,这是因为磷酸二酯主链的一个阴离子氧被一个硫原子取代。这种取代赋予磷原子(PSS或PSR)手性,并改变了B-DNA的能量,结构和生物学特性。通过分子力学计算,对一组规则序列d(YR)8.d(YR)8和d(RR)8.d(YY)8(R,嘌呤; Y,嘧啶)进行评估。结果表明:(i)PS(R)和PSS低聚物都不稳定,总能量的损失主要是由于静电项的变化引起的; (ii)由于范德华力和主链角能,PSS低聚物比PSR低聚物具有更大的手性效应; (iii)明显的序列对稳定性的影响,特别是从紧接PS基团之前的碱基开始。即使PS基团改变了低聚物的稳定性,它也没有显着改变构象。总之,我们的分子建模数据与可用的实验数据平行。我们的结果表明,序列对PS低聚物能量特性的影响是局部的和累加的。因此,对常规寡聚体中包括的10个独特的双链修饰双核苷酸步骤的研究可用于预测任何双链PS-DNA的行为。

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