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一种利用药效团建模、3D-QSAR分析、分子对接、密度泛函和分子动力学模拟研究来探索新型HDAC1抑制剂的机制方法。

A mechanistic approach to explore novel HDAC1 inhibitor using pharmacophore modeling, 3D- QSAR analysis, molecular docking, density functional and molecular dynamics simulation study.

作者信息

Choubey Sanjay K, Jeyaraman Jeyakanthan

机构信息

Structural Biology and Bio-computing Lab, Department of Bioinformatics, Alagappa University, Karaikudi, 630004 Tamil Nadu, India.

Structural Biology and Bio-computing Lab, Department of Bioinformatics, Alagappa University, Karaikudi, 630004 Tamil Nadu, India.

出版信息

J Mol Graph Model. 2016 Nov;70:54-69. doi: 10.1016/j.jmgm.2016.09.008. Epub 2016 Sep 14.

Abstract

Deregulated epigenetic activity of Histone deacetylase 1 (HDAC1) in tumor development and carcinogenesis pronounces it as promising therapeutic target for cancer treatment. HDAC1 has recently captured the attention of researchers owing to its decisive role in multiple types of cancer. In the present study a multistep framework combining ligand based 3D-QSAR, molecular docking and Molecular Dynamics (MD) simulation studies were performed to explore potential compound with good HDAC1 binding affinity. Four different pharmacophore hypotheses Hypo1 (AADR), Hypo2 (AAAH), Hypo3 (AAAR) and Hypo4 (ADDR) were obtained. The hypothesis Hypo1 (AADR) with two hydrogen bond acceptors (A), one hydrogen bond donor (D) and one aromatics ring (R) was selected to build 3D-QSAR model on the basis of statistical parameter. The pharmacophore hypothesis produced a statistically significant QSAR model, with co-efficient of correlation r=0.82 and cross validation correlation co-efficient q=0.70. External validation result displays high predictive power with r (o) value of 0.88 and r (m) value of 0.58 to carry out further in silico studies. Virtual screening result shows ZINC70450932 as the most promising lead where HDAC1 interacts with residues Asp99, His178, Tyr204, Phe205 and Leu271 forming seven hydrogen bonds. A high docking score (-11.17kcal/mol) and lower docking energy -37.84kcal/mol) displays the binding efficiency of the ligand. Binding free energy calculation was done using MM/GBSA to access affinity of ligands towards protein. Density Functional Theory was employed to explore electronic features of the ligands describing intramolcular charge transfer reaction. Molecular dynamics simulation studies at 50ns display metal ion (Zn)-ligand interaction which is vital to inhibit the enzymatic activity of the protein.

摘要

组蛋白去乙酰化酶1(HDAC1)在肿瘤发生和致癌过程中失调的表观遗传活性使其成为癌症治疗中有前景的治疗靶点。HDAC1最近因其在多种癌症中的决定性作用而引起了研究人员的关注。在本研究中,进行了一个多步骤框架,结合基于配体的3D-QSAR、分子对接和分子动力学(MD)模拟研究,以探索具有良好HDAC1结合亲和力的潜在化合物。获得了四种不同的药效团假设Hypo1(AADR)、Hypo2(AAAH)、Hypo3(AAAR)和Hypo4(ADDR)。基于统计参数,选择具有两个氢键受体(A)、一个氢键供体(D)和一个芳香环(R)的Hypo1(AADR)假设来构建3D-QSAR模型。该药效团假设产生了一个具有统计学意义的QSAR模型,相关系数r = 0.82,交叉验证相关系数q = 0.70。外部验证结果显示具有高预测能力,r(o)值为0.88,r(m)值为0.58,可进行进一步的计算机模拟研究。虚拟筛选结果显示ZINC70450932是最有前景的先导化合物,HDAC1与残基Asp99、His178、Tyr204、Phe205和Leu271相互作用形成七个氢键。高对接分数(-11.17kcal/mol)和较低的对接能量(-37.84kcal/mol)显示了配体的结合效率。使用MM/GBSA进行结合自由能计算,以评估配体对蛋白质的亲和力。采用密度泛函理论来探索描述分子内电荷转移反应的配体的电子特征。50ns的分子动力学模拟研究显示金属离子(Zn)-配体相互作用,这对于抑制蛋白质的酶活性至关重要。

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