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Docking, triggering, and biological activity of dynemicin A in DNA: A computational study

机译:Dynemicin A在DNA中的对接,触发和生物活性:一项计算研究

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The triggering and biological activity of the naturally occurring enediyne dynemicin A (1) was investigated, both inside and outside the minor groove of the duplex 10-mer B-DNA sequence d(CTACTACTGG)center dot d(CCAGTAGTAG), using density functional theory (B3LYP with the 3-21G and 6-31G(d) basis set), BD(T)/cc-pVDZ (Brueckner doubles with a perturbative treatment of triple excitations), and the ONIOM approach. Enediyne 1 is triggered by NADPH in a strongly exothermic reaction (-88 kcal/mol), which involves a number of intermediate steps. Untriggered 1 has a high barrier for the Bergman cyclization (52 kcal/mol) that is lowered after triggering to 16.7 kcal/mol due to an epoxide opening and the accompanying strain relief. The Bergman reaction of triggered 1 is slightly exothermic by 2.8 kcal/mol. The singlet biradical formed in this reaction is kinetically stable (activation enthalpies of 19.5 and 21.8 kcal/mol for retro-Bergman reactions) and is as reactive as para-benzyne. The activity-relevant docking mode is an edge-on insertion into the minor groove, whereas the intercalation between base pairs, although leading to larger binding energies, excludes a triggering of 1 and the development of its biological activity. Therefore, an insertion-intercalation model is developed, which can explain all known experimental observations made for 1. On the basis of the insertion-intercalation model it is explained why large intercalation energies suppress the biological activity of dynemicin and why double-strand scission can be achieved only in a two-step mechanism that involves two enediyne molecules, explaining thus the high ratio of single-strand to double-strand scission observed for 1.
机译:利用密度泛函理论研究了天然双烯联苯达尼霉素A(1)在双链10-mer B-DNA序列d(CTACTACTGG)中心点d(CCAGTAGTAG)的小沟内外的触发和生物学活性。 (具有3-21G和6-31G(d)基础集的B3LYP),BD(T)/ cc-pVDZ(Brueckner通过三重激发的扰动处理加倍)和ONIOM方法。 Enadiyne 1由NADPH在强烈放热反应(-88 kcal / mol)中触发,该反应涉及许多中间步骤。未触发的1对Bergman环化反应具有较高的势垒(52 kcal / mol),由于环氧化物的开放和随之而来的应力消除,触发后降低至16.7 kcal / mol。触发1的Bergman反应稍微放热2.8 kcal / mol。在该反应中形成的单线双自由基是动力学稳定的(对于后伯格曼反应,活化焓为19.5和21.8 kcal / mol),并且与对苯并ne具有同样的反应活性。与活性有关的对接模式是边插入小沟中,而碱基对之间的插入尽管会导致更大的结合能,但不包括触发1及其生物活性的发展。因此,开发了一种插入-嵌入模型,该模型可以解释对1进行的所有已知实验观察。在该插入-嵌入模型的基础上,解释了为什么大的插入能量会抑制达尼霉素的生物活性以及为什么双链断裂可以仅在涉及两个烯二炔分子的两步机理中才能实现,因此可以解释观察到的单链断裂与双链断裂的比率很高。

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