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首页> 外文期刊>Nucleic Acids Research >Hydration effects on the duplex stability of phosphoramidate DNA-RNA oligomers.
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Hydration effects on the duplex stability of phosphoramidate DNA-RNA oligomers.

机译:水合作用对氨基磷酸酯DNA-RNA低聚物的双链体稳定性的影响。

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摘要

Recent studies on uniformly modified oligonucleotides containing 3'-NHP(O)(O-)O-5'internucleoside linkages (3'amidate) and alternatively modified oligonucleotides containing 3'-O(O-)(O)PNH-5'internucleoside linkages (5'amidate) have shown that 3'amidate duplexes, formed with DNA or RNA complementary strands, are more stable in water than those of the corresponding phosphodiesters. In contrast, 5'amidates do not form duplexes at all. There is no steric reason that the 5'amidate duplex should not form. We demonstrate that these differences arise from differential solvation of the sugar-phosphate backbones. By molecular dynamics calculations on models of 10mer single-stranded DNA and double-stranded DNA-RNA molecules, both with and without the phosphoramidate backbone modifications, we show that the single-stranded 3'amidate and 5'amidate backbones are equally well solvated, but the 5'amidate backbone is not adequately solvated in an A-form duplex. These results are supported by quantum chemical free energy of solvation calculations which show that the 3'amidate backbone is favored relative to the 5'amidate backbone.
机译:含有3'-NHP(O)(O-)O-5'核苷间键(3'酰胺)的均匀修饰寡核苷酸以及含有3'-O(O-)(O)PNH-5'核苷的修饰寡核苷酸的最新研究连锁(5′-氨基甲酸酯)显示,与DNA或RNA互补链形成的3′-氨基甲酸酯双链体在水中比相应的磷酸二酯的双链体更稳定。相反,5'氨基甲酸酯根本不形成双链体。没有空间上的理由不应形成5'酰胺双链体。我们证明了这些差异是由糖-磷酸主链的不同溶剂化引起的。通过对带有或不带有氨基磷酸酯骨架修饰的10mer单链DNA和双链DNA-RNA分子模型进行的分子动力学计算,我们显示单链3'酰胺和5'酰胺的骨架均被很好地溶剂化,但是5'氨基甲酸酯骨架在A型双链体中不能充分溶解。这些结果得到溶剂化计算的量子化学自由能的支持,这表明相对于5'酰胺酸酯主链,3'酰胺酸酯主链是有利的。

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