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揭示抗癌潜力:(+)-荷叶边甾甙作为拓扑异构酶 I 抑制剂的氮衍生物的计算探索。

Unveiling the Anticancer Potential: Computational Exploration of Nitrogenated Derivatives of (+)-Pancratistatin as Topoisomerase I Inhibitors.

机构信息

Department of Pharmaceutical Chemistry, College of Pharmacy, Jouf University, Sakaka 72388, Saudi Arabia.

Department of Clinical Laboratory Sciences, College of Applied Medical Sciences, Jouf University, Sakaka 42421, Saudi Arabia.

出版信息

Int J Mol Sci. 2024 Oct 7;25(19):10779. doi: 10.3390/ijms251910779.

Abstract

Cancer poses a substantial global health challenge, driving the need for innovative therapeutic solutions that offer improved effectiveness and fewer side effects. Topoisomerase I (Topo I) has emerged as a validated molecular target in the pursuit of developing anticancer drugs due to its critical role in DNA replication and transcription. (+)-Pancratistatin (PST), a naturally occurring compound found in various plants, exhibits promising anticancer properties by inhibiting Topo I activity. However, its clinical utility is hindered by issues related to limited chemical availability and aqueous solubility. To address these challenges, molecular modelling techniques, including virtual screening, molecular docking, molecular mechanics with generalised born and surface area solvation (MM-GBSA) calculations, and molecular dynamics simulations were utilised to evaluate the binding interactions and energetics of PST analogues with Topo I, comparing them with the well-known Topo I inhibitor, Camptothecin. Among the compounds screened for this study, nitrogenated analogues emerged as the most encouraging drug candidates, exhibiting improved binding affinities, favourable interactions with the active site of Topo I, and stability of the protein-ligand complex. Structural analysis pinpointed key molecular determinants responsible for the heightened potency of nitrogenated analogues, shedding light on essential structural modifications for increased activity. Moreover, in silico absorption, distribution, metabolism, excretion, and toxicity (ADMET) predictions highlighted favourable drug-like properties and reduced toxicity profiles for the most prominent nitrogenated analogues, further supporting their potential as effective anticancer agents. In summary, this screening study underscores the significance of nitrogenation in augmenting the anticancer efficacy of PST analogues targeting Topo I. The identified lead compounds exhibit significant potential for subsequent experimental validation and optimisation, thus facilitating the development of novel and efficacious anticancer therapeutics with enhanced pharmacological profiles.

摘要

癌症是全球健康面临的重大挑战,需要创新的治疗方法,以提供更好的疗效和更少的副作用。拓扑异构酶 I(Topo I)在 DNA 复制和转录中发挥着关键作用,已成为开发抗癌药物的验证分子靶标。(+)-Pancratistatin(PST)是一种天然存在于多种植物中的化合物,通过抑制 Topo I 活性表现出有希望的抗癌特性。然而,其临床应用受到化学可用性和水溶性有限等问题的限制。为了解决这些挑战,利用分子建模技术,包括虚拟筛选、分子对接、分子力学与广义 Born 和表面面积溶剂化(MM-GBSA)计算以及分子动力学模拟,评估了 PST 类似物与 Topo I 的结合相互作用和能量学,并与著名的 Topo I 抑制剂喜树碱进行了比较。在本研究中筛选的化合物中,氮代类似物是最有前途的候选药物,它们表现出改善的结合亲和力、与 Topo I 活性位点的有利相互作用以及蛋白质-配体复合物的稳定性。结构分析确定了导致氮代类似物增强效力的关键分子决定因素,阐明了增加活性所需的基本结构修饰。此外,计算机预测的吸收、分布、代谢、排泄和毒性(ADMET)凸显了最突出的氮代类似物具有良好的类药性和降低的毒性特征,进一步支持它们作为有效抗癌药物的潜力。总之,这项筛选研究强调了氮代在增强针对 Topo I 的 PST 类似物抗癌疗效方面的重要性。鉴定出的先导化合物具有显著的潜力,可以进一步进行实验验证和优化,从而促进开发具有增强药理学特性的新型有效抗癌治疗药物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d123/11476810/21a5a6c4750f/ijms-25-10779-g001.jpg

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