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The effect of amino groups on the stability of DNA duplexes and triplexes based on purines derived from inosine

机译:氨基对 嘌呤衍生的DNA双链体和三链体的稳定性 来自肌苷

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摘要

The effect of amino groups attached at positions 2 and 8 of the hypoxanthine moiety in the structure, reactivity and stability of DNA duplexes and triplexes is studied by means of quantum mechanical calculations, as well as extended molecular dynamics (MD) and thermodynamic integration (MD/TI) simulations. Theoretical estimates of the change in stability related to 2′-deoxyguanosine (G) → 2′-deoxyinosine (I) → 8-amino-2′-deoxyinosine (8AI) mutations have been experimentally verified, after synthesis of the corresponding compounds. An amino group placed at position 2 stabilizes the duplex, as expected, and surprisingly also the triplex. The presence of an amino group at position 8 of the hypoxanthine moiety stabilizes the triplex but, surprisingly, destabilizes the duplex. The subtle electronic redistribution occurring upon the introduction of an amino group on the purine seems to be responsible for this surprising behavior. Interesting ‘universal base’ properties are found for 8AI.
机译:通过量子力学计算,扩展的分子动力学(MD)和热力学积分(MD)研究了次黄嘌呤部分2和8位上连接的氨基对DNA双链体和三链体的结构,反应性和稳定性的影响。 / TI)模拟。合成相应化合物后,已通过实验验证了与2'-脱氧鸟苷(G)→2'-脱氧肌苷(I)→8-氨基-2'-脱氧肌苷(8AI)突变相关的稳定性变化的理论估计。如预期的那样,位于位置2的氨基稳定了双链体,并且令人惊奇地还稳定了三链体。次黄嘌呤部分的第8位氨基的存在使三链体稳定,但是令人惊讶地使双链体不稳定。在嘌呤上引入氨基后,微妙的电子再分布似乎是造成这种意外行为的原因。找到了8AI有趣的“通用基础”属性。

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