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通过严格的分子动力学、DFT 和基于细胞的测定,描绘结合势、亚砜硫代乙酰半胱氨酸在组蛋白去乙酰化酶 2 活性部位的稳定性,并测试其对不同癌症系的细胞毒性。

Delineating binding potential, stability of Sulforaphane-N-acetyl-cysteine in the active site of histone deacetylase 2 and testing its cytotoxicity against distinct cancer lines through stringent molecular dynamics, DFT and cell-based assays.

机构信息

Division of Basic Sciences and Humanities, FoA, SKUAST-Kashmir, 193201, India.

Department of Animal Health and Management, Alagappa University, Karaikudi, India.

出版信息

Chem Biol Drug Des. 2021 Sep;98(3):363-376. doi: 10.1111/cbdd.13854. Epub 2021 Jun 19.

Abstract

Histone deacetylase 2 (HDAC2), an isozyme of Class I HDACs has potent imputations in actuating neurodegenerative signaling. Currently, there are sizeable therapeutic disquiets with the use of synthetic histone deacetylase inhibitors in disease management. This strongly suggests the unfulfilled medical necessity of plant substitutes for therapeutic intervention. Sulforaphane-N-acetyl-cysteine (SFN-N-acetylcysteine or SFN-NAC), a sulforaphane metabolite has shown significantly worthier activity against HDACs under in vitro conditions. However, the atomistic studies of SFN-NAC against HDAC2 are currently lacking. Thus, the present study employed a hybrid strategy including extra-precision (XP) grid-based flexible molecular docking, molecular mechanics generalized born surface area (MM-GBSA), e-Pharmacophores method, and molecular dynamics simulation for exploring the binding strengh, mode of interaction, e-Pharmacophoric features, and stability of SFN-NAC towards HDAC2. Further, the globally acknowledged density functional theory (DFT) study was performed on SFN-NAC and entinostat individually in complex state with HDAC2. Apart from this, these inhibitors were tested against three distinct cancer cell models and one transformed cell line for cytotoxic activity. Moreover, double mutant of HDAC2 was generated and the binding orientation and interaction of SFN-NAC was scrutinized in this state. On the whole, this study unbosomed and explained the comparatively higher binding affinity of entinostat for HDAC2 and its wide spectrum cytotoxicity than SFN-NAC.

摘要

组蛋白去乙酰化酶 2(HDAC2)是 I 类 HDAC 的同工酶,在启动神经退行性信号中具有强大的作用。目前,在疾病管理中使用合成组蛋白去乙酰化酶抑制剂存在较大的治疗担忧。这强烈表明需要植物替代品来进行治疗干预。硫代葡萄糖苷-N-乙酰半胱氨酸(SFN-N-乙酰半胱氨酸或 SFN-NAC)是一种硫代葡萄糖苷代谢物,在体外条件下对 HDAC 表现出显著更高的活性。然而,SFN-NAC 对 HDAC2 的原子研究目前还缺乏。因此,本研究采用了一种混合策略,包括超精确(XP)网格基柔性分子对接、分子力学广义 Born 表面面积(MM-GBSA)、电子药效团方法和分子动力学模拟,以探索 SFN-NAC 与 HDAC2 的结合强度、相互作用模式、电子药效团特征和稳定性。此外,还对 SFN-NAC 和恩替诺特分别在与 HDAC2 形成复合物的状态下进行了公认的全局密度泛函理论(DFT)研究。除此之外,还对这些抑制剂在三种不同的癌细胞模型和一种转化细胞系中进行了细胞毒性测试。此外,还生成了 HDAC2 的双突变体,并在这种状态下研究了 SFN-NAC 的结合方向和相互作用。总的来说,这项研究揭示并解释了恩替诺特对 HDAC2 的结合亲和力以及其比 SFN-NAC 更广泛的细胞毒性的原因。

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