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人组蛋白去乙酰化酶 10 的同源建模及潜在选择性抑制剂的设计。

Homology modeling of human histone deacetylase 10 and design of potential selective inhibitors.

机构信息

a Department of Bioinformatics and Genetics, Faculty of Engineering and Natural Sciences , Kadir Has University , Istanbul , Turkey.

b Centre for Biotechnology Research , Bayero University , Kano , Nigeria Communicated by Ramaswamy H. Sarma.

出版信息

J Biomol Struct Dyn. 2019 Sep;37(14):3627-3636. doi: 10.1080/07391102.2018.1521747. Epub 2019 Jan 10.

DOI:10.1080/07391102.2018.1521747
PMID:30204052
Abstract

Histone deacetylases (HDACs) are implicated in the pathology of various cancers, and their pharmacological blockade has proven to be promising in reversing the malignant phenotypes. However, lack of crystal structures of some of the human HDAC isoforms (e.g., HDAC10) hinders the design of the isoform-selective inhibitor. Here, the recently solved X-ray crystal structure of (zebrafish) HDAC10 (Protein Data Bank (PDB) ID; 5TD7, released on 24 May 2017) was retrieved from the PDB and used as a template structure to model the three-dimensional structure of human HDAC10. The overall quality of the best model (M0017) was assessed by computing its z-score-a measure of the deviation of the total energy of the structure with respect to an energy distribution derived from random conformations and by docking of known HDAC10 inhibitors to its catalytic cavity. Furthermore, to identify potential HDAC10-selective inhibitor ligand-based virtual screening was carried out against the ZINC database. The free modeled structure of HDAC10 and its complexes with quisinostat and the highest-ranked compound ZINC19749069 were submitted to molecular dynamics simulation. The comparative analysis of root-mean-squared deviation, root-mean-squared fluctuation, radius of gyration (Rg), and potential energy of these systems showed that HDAC10-ZINC19749069 complex remained the most stable over time. Thus, M0017 could be potentially used for structure-based inhibitor against HDAC10, and ZINC19749069 may provide a scaffold for further optimization. Communicated by Ramaswamy H. Sarma.

摘要

组蛋白去乙酰化酶(HDACs)与多种癌症的病理学有关,其药理学阻断已被证明在逆转恶性表型方面具有很大的潜力。然而,由于一些人类 HDAC 同工型(如 HDAC10)缺乏晶体结构,阻碍了同工型选择性抑制剂的设计。在这里,从 PDB 中检索到最近解决的(斑马鱼)HDAC10 的 X 射线晶体结构(PDB ID;5TD7,于 2017 年 5 月 24 日发布),并将其用作模板结构来模拟人 HDAC10 的三维结构。通过计算其 z 分数-一种衡量结构总能量相对于随机构象得出的能量分布的偏离的方法,以及将已知的 HDAC10 抑制剂对接其催化腔,来评估最佳模型(M0017)的整体质量。此外,为了鉴定潜在的 HDAC10 选择性抑制剂,针对 ZINC 数据库进行了基于配体的虚拟筛选。将 HDAC10 的自由建模结构及其与 quisinostat 的复合物和排名最高的化合物 ZINC19749069 提交给分子动力学模拟。对这些系统的均方根偏差、均方根波动、回转半径(Rg)和势能的比较分析表明,HDAC10-ZINC19749069 复合物随着时间的推移保持最稳定。因此,M0017 可能潜在地用于针对 HDAC10 的基于结构的抑制剂,并且 ZINC19749069 可能为进一步优化提供一个支架。由 Ramaswamy H. Sarma 传达。

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