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平滑势能 MD 模拟研究依托泊苷的离解动力学,以揭示靶向人拓扑异构酶 II 的异构体特异性。

Smoothed Potential MD Simulations for Dissociation Kinetics of Etoposide To Unravel Isoform Specificity in Targeting Human Topoisomerase II.

机构信息

Laboratory of Molecular Modeling and Drug Discovery , Istituto Italiano di Tecnologia , Via Morego 30 , 16163 Genova , Italy.

Department of Biochemistry , Vanderbilt University School of Medicine , Nashville , Tennessee 37232-0146 , United States.

出版信息

J Chem Inf Model. 2019 Sep 23;59(9):4007-4017. doi: 10.1021/acs.jcim.9b00605. Epub 2019 Sep 9.

Abstract

Human type II topoisomerases (TopoII) are essential for controlling DNA topology within the cell. For this reason, there are a number of TopoII-targeted anticancer drugs that act by inducing DNA cleavage mediated by both TopoII isoforms (TopoIIα and TopoIIβ) in cells. However, recent studies suggest that specific poisoning of TopoIIα may be a safer strategy for treating cancer. This is because poisoning of TopoIIβ appears to be linked to the generation of secondary leukemia in patients. We recently reported that enzyme-mediated DNA cleavage complexes (in which TopoII is covalently linked to the cleaved DNA during catalysis) formed in the presence of the anticancer drug etoposide persisted approximately 3-fold longer with TopoIIα than TopoIIβ. Notably, enhanced drug-target residence time may reduce the adverse effects of specific TopoIIα poisons. However, it is still not clear how to design drugs that are specific for the α isoform. In this study, we report the results of classical molecular dynamics (MD) simulations to comparatively analyze the molecular interactions formed within the TopoII/DNA/etoposide complex with both isoforms. We also used smoothed potential MD to estimate etoposide dissociation kinetics from the two isoform complexes. These extensive classical and enhanced sampling simulations revealed stabilizing interactions of etoposide with two serine residues (Ser763 and Ser800) in TopoIIα. These interactions are missing in TopoIIβ, where both amino acids are alanine residues. This may explain the greater persistence of etoposide-stabilized cleavage complexes formed with Topo TopoIIα. These findings could be useful for the rational design of specific TopoIIα poisons.

摘要

人类 II 型拓扑异构酶(TopoII)对于控制细胞内 DNA 拓扑结构至关重要。出于这个原因,有许多针对 TopoII 的抗癌药物通过诱导两种 TopoII 同工酶(TopoIIα 和 TopoIIβ)介导的 DNA 切割来发挥作用。然而,最近的研究表明,特异性毒化 TopoIIα 可能是治疗癌症的更安全策略。这是因为 TopoIIβ 的毒化似乎与患者继发性白血病的产生有关。我们最近报道,在抗癌药物依托泊苷存在的情况下形成的酶介导的 DNA 切割复合物(其中 TopoII 在催化过程中与切割的 DNA 共价连接)与 TopoIIβ 相比,与 TopoIIα 形成的复合物的稳定性大约延长了 3 倍。值得注意的是,增强药物靶标停留时间可能会降低特异性 TopoIIα 毒物的不良反应。然而,目前尚不清楚如何设计针对α同工酶的药物。在这项研究中,我们报告了经典分子动力学(MD)模拟的结果,以比较分析两种同工酶的 TopoII/DNA/依托泊苷复合物内形成的分子相互作用。我们还使用平滑势能 MD 来估计依托泊苷从两种同工酶复合物中的解离动力学。这些广泛的经典和增强采样模拟揭示了依托泊苷与 TopoIIα 中的两个丝氨酸残基(Ser763 和 Ser800)形成的稳定相互作用。在 TopoIIβ 中,这两个氨基酸都是丙氨酸残基,因此不存在这些相互作用。这可能解释了与 Topo TopoIIα 形成的依托泊苷稳定的切割复合物的更长持久性。这些发现可能有助于特异性 TopoIIα 毒物的合理设计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2eaa/6878999/8c479fabaeb6/ci9b00605_0001.jpg

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