Discovery of novel antagonists targeting the DNA binding domain of androgen receptor by integrated docking-based virtual screening and bioassays

被引:0
作者
Jin-ping Pang
Chao Shen
Wen-fang Zhou
Yun-xia Wang
Lu-hu Shan
Xin Chai
Ying Shao
Xue-ping Hu
Feng Zhu
Dan-yan Zhu
Li Xiao
Lei Xu
Xiao-hong Xu
Dan Li
Ting-jun Hou
机构
[1] Zhejiang University,Hangzhou Institute of Innovative Medicine, College of Pharmaceutical Sciences
[2] Zhejiang Cancer Hospital,Institute of Cancer Research and Basic Medical Sciences of Chinese Academy of Sciences, Cancer Hospital of University of Chinese Academy of Sciences
[3] Huzhou University,School of Life Science
[4] Jiangsu University of Technology,Institute of Bioinformatics and Medical Engineering, School of Electrical and Information Engineering
[5] Zhejiang University,State Key Lab of CAD & CG
来源
Acta Pharmacologica Sinica | 2022年 / 43卷
关键词
androgen receptor; DNA binding domain; antagonist; prostate cancer; virtual screening; molecular docking;
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暂无
中图分类号
学科分类号
摘要
Androgen receptor (AR), a ligand-activated transcription factor, is a master regulator in the development and progress of prostate cancer (PCa). A major challenge for the clinically used AR antagonists is the rapid emergence of resistance induced by the mutations at AR ligand binding domain (LBD), and therefore the discovery of novel anti-AR therapeutics that can combat mutation-induced resistance is quite demanding. Therein, blocking the interaction between AR and DNA represents an innovative strategy. However, the hits confirmed targeting on it so far are all structurally based on a sole chemical scaffold. In this study, an integrated docking-based virtual screening (VS) strategy based on the crystal structure of the DNA binding domain (DBD) of AR was conducted to search for novel AR antagonists with new scaffolds and 2-(2-butyl-1,3-dioxoisoindoline-5-carboxamido)−4,5-dimethoxybenzoicacid (Cpd39) was identified as a potential hit, which was competent to block the binding of AR DBD to DNA and showed decent potency against AR transcriptional activity. Furthermore, Cpd39 was safe and capable of effectively inhibiting the proliferation of PCa cell lines (i.e., LNCaP, PC3, DU145, and 22RV1) and reducing the expression of the genes regulated by not only the full-length AR but also the splice variant AR-V7. The novel AR DBD-ARE blocker Cpd39 could serve as a starting point for the development of new therapeutics for castration-resistant PCa.
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页码:229 / 239
页数:10
相关论文
共 294 条
[31]  
Yong EL(2010)Software news and update autodock vina: improving the speed and accuracy of docking with a new scoring function, efficient optimization, and multithreading J Comput Chem 31 455-40
[32]  
Shafi AA(2010)New substructure filters for removal of pan assay interference compounds (PAINS) from screening libraries and for their exclusion in bioassays J Med Chem 53 2719-66
[33]  
Yen AHE(2003)Designing screens: how to make your hits a hit Nat Rev Drug Discov 2 259-25
[34]  
Weigel NL(1997)Experimental and computational approaches to estimate solubility and permeability in drug discovery and development settings Adv Drug Deliv Rev 23 3-64
[35]  
Ning YMM(2000)Property distribution of drug-related chemical databases J Comput Aided Mol Des 14 251-91
[36]  
Pierce W(2007)Epik: a software program for pK (a) prediction and protonation state generation for drug-like molecules J Comput Aided Mol Des 21 681-12
[37]  
Maher VE(2011)Open babel: An open chemical toolbox J Cheminformatics 3 1-26
[38]  
Karuri S(2007)Rapid, non-destructive, cell-based screening assays for agents that modulate growth, death, and androgen receptor activation in prostate cancer cells Prostate 67 416-27
[39]  
Tang SH(2018)Discovery of novel androgen receptor ligands by structure-based virtual screening and bioassays Genom Proteom Bioinf 16 416-41
[40]  
Chiu HJ(2002)The ensembl genome database project Nucleic Acids Res 30 38-60