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筛选植物化合物以鉴定潜在的组蛋白去乙酰化酶 1(HDAC1)抑制剂:一种基于分子对接、分子动力学模拟和 MM-GBSA 方法的研究。

Screening of Phytocompounds for Identification of Prospective Histone Deacetylase 1 (HDAC1) Inhibitor: An In Silico Molecular Docking, Molecular Dynamics Simulation, and MM-GBSA Approach.

机构信息

Department of Bioengineering and Technology, Gauhati University, Guwahati, 781014, Assam, India.

Division of Computer Aided Drug Design, Department of Pharmaceutical Chemistry, R. C. Patel Institute of Pharmaceutical Education and Research, Shirpur, 425405, Maharashtra, India.

出版信息

Appl Biochem Biotechnol. 2024 Jul;196(7):3747-3764. doi: 10.1007/s12010-023-04731-3. Epub 2023 Sep 30.

Abstract

The upregulation of HDAC1 facilitate the induction of epigenetic repression of genes responsible for suppressing tumourigenesis, thereby triggering the development of cancer. HDAC1 inhibitors have thus emerged as possible therapeutic approaches against a variety of human malignancies, as they can inhibit the activity of certain HDACs, repair the overexpression of tumour suppressor genes, and induce cell differentiation, cell cycle arrest, and apoptosis. In this study, among 810 virtually screened compounds, Pinocembrin (PHUB000396) had a significant binding affinity (-7.99 kcal/mol). In molecular dynamics simulation (MD) studies for 200 ns time scale, the compound Pinocembrin effectively undergoes conformational optimization, thereby enabling its accommodation within the active site of the receptor. This outcome serves as a rational for the observed binding affinity. The optimal binding free energy calculations using the Molecular Mechanics Generalized Born Surface Area (MM-GBSA) (-35.86 ± 7.52 kcal/mol) showed the significant role of van der Waals forces and Coulomb interactions in the stability of the respective complex. The pharmacokinetic study showed its potential as a lead compound. The in-silico cytotoxicity prediction also confirmed its potential as an active anticancer phytocompound in lung and brain cancer. Therefore, it can be predicted that Pinocembrin could be a useful bioactive compound as an HDAC1 inhibitor and could be used in developing epigenetic therapy in cancer such as brain cancer and lung cancer to regulate gene expression.

摘要

组蛋白去乙酰化酶 1 的上调促进了负责抑制肿瘤发生的基因的表观遗传抑制的诱导,从而引发癌症的发展。因此,组蛋白去乙酰化酶 1 抑制剂作为各种人类恶性肿瘤的潜在治疗方法已经出现,因为它们可以抑制某些组蛋白去乙酰化酶的活性,修复肿瘤抑制基因的过表达,并诱导细胞分化、细胞周期停滞和细胞凋亡。在这项研究中,在 810 种虚拟筛选的化合物中,松属素(PHUB000396)具有显著的结合亲和力(-7.99 kcal/mol)。在 200 ns 时间尺度的分子动力学模拟(MD)研究中,该化合物松属素有效地经历构象优化,从而使其能够容纳在受体的活性部位内。这一结果为观察到的结合亲和力提供了合理的解释。使用分子力学广义 Born 表面积(MM-GBSA)进行最佳结合自由能计算(-35.86 ± 7.52 kcal/mol)表明范德华力和库仑相互作用在稳定相应复合物中起重要作用。药代动力学研究表明其具有作为先导化合物的潜力。计算机细胞毒性预测也证实了它作为一种活性抗癌植物化合物在肺癌和脑癌中的潜力。因此,可以预测松属素可能是一种有用的生物活性化合物,作为组蛋白去乙酰化酶 1 抑制剂,并可用于开发脑癌和肺癌等癌症的表观遗传治疗,以调节基因表达。

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