National Medicines Institute, Warsaw, Poland; Institute of Organic Chemistry, Polish Academy of Sciences, Warsaw, Poland.
National Medicines Institute, Warsaw, Poland; Institute of Organic Chemistry, Polish Academy of Sciences, Warsaw, Poland.
Bioorg Chem. 2021 Feb;107:104631. doi: 10.1016/j.bioorg.2021.104631. Epub 2021 Jan 7.
In this account we present NMR based results of the interaction of 7-ethyl-9-hydroxymethyl-10-hydroxycamptothecin (1), a derivative of SN38, with a model nicked DNA decamer mimicking the wild type DNA target of Topoisomerase I inhibitors from the camptothecin family. The title compound 1 can be considered a main metabolite of phase I in the metabolic pathway of camptothecin derivatives bearing the alkylamino substituent. Therefore, its pharmacodynamic properties are of interest. It was established by DOSY (Diffusion Ordered Spectroscopy) that compound 1 forms a fairly stable molecular complex with a model nicked DNA decamer with affinity constant K 3.02 mM. The analysis of NOESY experiments revealed intermolecular cross peaks and mutual induced shifts on both interacting components allowing the conclusion that guest molecule 1 is stacking the nitrogen bases inside the nick. MD (Molecular Dynamics) analysis of four possible inclusions of 1 inside the nick allows establishing the detailed geometry of a complex. Two conformations are suggested as the ones best representing the results of molecular modeling reconciled with experimental NOESY results. The aromatic core of both structures is stacking the nitrogen bases in a nick facing the unbroken strand with ring A. The protons in ring E interact with ribose protons of edge bases of a nick. In conclusion, it can be asserted that SN38 derivative 1 can effectively bind the molecular target of Topo I enzyme and play a role as a Topo I inhibitor.
在本报告中,我们展示了基于 NMR 的结果,研究了 SN38 的衍生物 7-乙基-9-羟甲基-10-羟基喜树碱(1)与一个模型切口 DNA 十聚体的相互作用,该模型切口 DNA 十聚体模拟拓扑异构酶 I 抑制剂家族中喜树碱类药物的野生型 DNA 靶标。标题化合物 1 可以被认为是带有烷基氨基取代基的喜树碱衍生物代谢途径中 I 期代谢的主要代谢物。因此,其药效学性质很重要。通过 DOSY(扩散有序光谱)确定,化合物 1 与模型切口 DNA 十聚体形成相当稳定的分子复合物,亲和力常数 K 为 3.02 mM。NOESY 实验的分析揭示了相互作用的两种成分之间的分子间交叉峰和相互诱导位移,从而得出结论,客体分子 1 在切口内堆积氮碱基。对 1 在内切口中的四个可能包含物的 MD(分子动力学)分析允许确定复合物的详细几何形状。建议两种构象作为最能代表分子建模结果并与实验 NOESY 结果相协调的构象。两个结构的芳核都将碱基堆积在面对未断裂链的切口的氮碱基上,环 A。环 E 的质子与切口边缘碱基的核糖质子相互作用。总之,可以断言 SN38 衍生物 1 可以有效地结合拓扑异构酶 I 酶的分子靶标,并作为拓扑异构酶 I 抑制剂发挥作用。