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Specific DNA structural attributes modulate platinum anticancer drug site selection and cross-link generation

机译:特定的DNA结构属性可调节铂类抗癌药物的位点选择和交联生成

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摘要

Heavy metal compounds have toxic and medicinal potential through capacity to form strong specific bonds with macromolecules, and the interaction of platinum drugs at the major groove nitrogen atom of guanine bases primarily underlies their therapeutic activity. By crystallographic analysis of transition metal–and in particular platinum compound–DNA site selectivity in the nucleosome core, we establish that steric accessibility, which is controlled by specific structural parameters of the double helix, modulates initial guanine–metal bond formation. Moreover, DNA conformational features can be linked to both similarities and distinctions in platinum drug adduct formation between the naked and nucleosomal DNA states. Notably, structures that facilitate initial platinum–guanine bond formation can oppose cross-link generation, rationalizing the occurrence of long-lived therapeutically ineffective monofunctional adducts. These findings illuminate DNA structure-dependent reactivity and provide a novel framework for understanding metal–double helix interactions, which should facilitate the development of improved chromatin-targeting medicinal agents.
机译:重金属化合物通过与大分子形成强特异性键的能力而具有毒性和药用潜力,并且铂药物在鸟嘌呤碱基的主要沟槽氮原子上的相互作用主要是其治疗活性的基础。通过对核小体核心中过渡金属尤其是铂化合物的DNA位点选择性的晶体学分析,我们确定了由双螺旋结构的特定结构参数控制的空间可及性,调节了鸟嘌呤-金属键的初始形成。此外,DNA构象特征可与裸露和核小体DNA状态之间铂药物加合物形成的相似性和区别联系在一起。值得注意的是,促进最初的铂-鸟嘌呤键形成的结构可能会反对交联生成,从而使长期存在的治疗无效的单官能加合物合理化。这些发现阐明了DNA结构依赖性的反应性,并为理解金属-双螺旋相互作用提供了一个新颖的框架,这应有助于开发改进的针对染色质的药物。

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