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Bifunctional Binding of Cisplatin to DNA: Why Does Cisplatin Form 12-Intrastrand Cross-links with AG But Not with GA?

机译:顺铂与DNA的双功能结合:为什么顺铂与AG形成12-链内交联但不与GA形成12-链内交联?

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摘要

The bifunctional binding of the anticancer drug cisplatin to two adjacent nucleobases in DNA is modeled using density functional theory. Previous experimental studies revealed that cisplatin binding to adjacent guanine and adenine is sensitive to nucleobase sequence. Whereas AG 1,2-intrastrand cross-links are commonly observed, the analogous GA adducts are not known. This study focuses on understanding this directional preference by constructing a full reaction profile using quantum chemical simulation methods. Monofunctional and bifunctional cisplatin adducts were generated and the transition states that connect them were located for the dinucleotides d(pApG) and d(pGpA), assuming that initial platination takes place at the guanine site. Our computer simulations reveal a significant kinetic preference for formation of the AG over the GA adduct. The activation free energies of ~23 kcal/mol for AG and ~32 kcal/mol for GA suggest that bifunctional closure is ~6 orders of magnitude faster for AG than for GA. Responsible for the stabilization of the transition state that affords the AG adduct is a strong hydrogen bond between one of the ammine ligands of cisplatin and the 5′ phosphate group of the DNA backbone. This interaction is absent in the transition state that leads to the GA adduct, because the right-handed helix of the DNA backbone places the phosphate out of reach for the ammine ligand. We found only an insignificant thermodynamic difference between AG and GA adducts and conclude that the preference of AG over GA binding is largely under kinetic control. The puckering of the deoxyribose ring plays an important role in determining the energetics of the bifunctional platination products. Whereas the 3′-nucleoside remains in the native C2′-endo/C3′-exo form of B-DNA, the deoxyribose of the 5′-nucleoside always adopts the C2′-exo/C3′-endo puckering in our simulations. A detailed analysis of the energies and structures of the bifunctional adducts revealed that the observed sugar puckering patterns are necessary for platinum to bind in a relaxed coordination geometry.
机译:抗癌药顺铂与DNA中两个相邻核碱基的双功能结合是使用密度泛函理论建模的。先前的实验研究表明,顺铂与相邻鸟嘌呤和腺嘌呤的结合对核碱基序列敏感。尽管通常观察到AG 1,2-链内交联,但类似的GA加合物尚不清楚。这项研究的重点是通过使用量子化学模拟方法构建完整的反应曲线来理解这种方向性偏好。假设最初的铂化发生在鸟嘌呤位点,则生成单官能和双官能的顺铂加合物,并确定连接它们的过渡态为二核苷酸d(pApG)和d(pGpA)。我们的计算机模拟显示,与GA加合物相比,AG形成具有显着的动力学偏好。 AG的活化能约为23 kcal / mol,GA的活化能约为32 kcal / mol,这表明AG的双功能闭合速度比GA快约6个数量级。负责提供AG加合物的过渡态的稳定是顺铂的氨基配体之一与DNA骨架的5'磷酸基团之间的强氢键。在导致GA加合物的过渡态中,这种相互作用是不存在的,因为DNA主链的右旋螺旋使磷酸盐无法与胺配体接触。我们发现在AG和GA加合物之间只有很小的热力学差异,并得出结论,AG对GA的结合在很大程度上受动力学控制。脱氧核糖环的起皱在确定双官能镀铂产物的能量方面起重要作用。尽管3'核苷保留为B-DNA的天然C2'-endo / C3'-exo形式,但在我们的模拟中5'-核苷的脱氧核糖始终采用C2'-exo / C3'-endo折叠。对双功能加合物的能量和结构的详细分析表明,观察到的糖起皱模式对于铂以松弛的配位几何形状结合是必需的。

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