Discovery of novel diarylpyrimidines as potent HIV-1 NNRTIs by investigating the chemical space of a less explored "hydrophobic channel"

被引:28
作者
Zhou, Zhongxia [1 ]
Liu, Tao [1 ]
Kang, Dongwei [1 ]
Huo, Zhipeng [1 ]
Wu, Gaochan [1 ]
Daelemans, Dirk [2 ]
De Clercq, Erik [2 ]
Pannecouque, Christophe [2 ]
Zhan, Peng [1 ]
Liu, Xinyong [1 ]
机构
[1] Shandong Univ, Dept Med Chem, Key Lab Chem Biol, Minist Educ,Sch Pharmaceut Sci, 44 West Culture Rd, Jinan 250012, Shandong, Peoples R China
[2] Katholieke Univ Leuven, Rega Inst Med Res, Minderbroedersstr 10, B-3000 Leuven, Belgium
基金
中国国家自然科学基金;
关键词
REVERSE-TRANSCRIPTASE INHIBITORS; HIGH-RESOLUTION STRUCTURES; BINDING POCKET; NONNUCLEOSIDE INHIBITOR; MOLECULAR HYBRIDIZATION; RESISTANCE MUTATIONS; ENTRANCE CHANNEL; DRUG-RESISTANCE; PRELIMINARY SAR; RT INHIBITORS;
D O I
10.1039/c7ob02828h
中图分类号
O62 [有机化学];
学科分类号
070303 ; 081704 ;
摘要
A new series of diarylpyrimidines (DAPYs) were designed, synthesized and evaluated as novel HIV-1 NNRTIs to further explore the chemical space surrounding the "hydrophobic channel" of the NNRTI binding pocket (NNIBP), guided by the comprehensive analysis of X-ray structural biology data of HIV-1 RT/NNRTI complexes and molecular modeling. Encouragingly, most of the synthesized DAPYs were found to be active against the HIV-1 wild-type (WT) strain with EC50 values ranging from 3 nM to 63 nM, and displayed significantly reduced cytotoxicity compared with etravirine (ETV) and rilpivirine (RPV). Among them, two most promising compounds Z10 (EC50 = 3 nM) and Z13 ( EC50 = 3 nM) showed equivalent potency against the HIV-1 WT strain to the reference drugs efavirenz (EFV, EC50 = 3 nM) and ETV ( EC50 = 3 nM). Notably, Z13 also showed the most potent activity against HIV-1 mutant strains including K103N (EC50 = 10 nM), E138K (EC50 = 22 nM) and RES056 (EC50 = 0.935 mu M). Against mutant strains Y181C, Y188L and F227L + V106A, Z17 showed double-digit nanomolar inhibitory activity with EC50 values 27 nM, 98 nM and 30 nM, respectively. The structure-activity relationships (SARs) and molecular docking studies provided important clues for further molecular elaboration. Collectively, this study provides useful information to guide lead optimization and drug discovery via the exploration of this seldom investigated region.
引用
收藏
页码:1014 / 1028
页数:15
相关论文
共 45 条
[1]   TMC278, a Next-Generation Nonnucleoside Reverse Transcriptase Inhibitor (NNRTI), Active against Wild-Type and NNRTI-Resistant HIV-1 [J].
Azijn, Hilde ;
Tirry, Ilse ;
Vingerhoets, Johan ;
de Bethune, Marie-Pierre ;
Kraus, Guenter ;
Boven, Katia ;
Jochmans, Dirk ;
Van Craenenbroeck, Elke ;
Picchio, Gaston ;
Rimsky, Laurence T. .
ANTIMICROBIAL AGENTS AND CHEMOTHERAPY, 2010, 54 (02) :718-727
[2]   Non-nucleoside HIV-1 reverse transcriptase (RT) inhibitors: Past, present, and future perspectives [J].
Campiani, G ;
Ramunno, A ;
Maga, G ;
Nacci, V ;
Fattorusso, C ;
Catalanotti, B ;
Morelli, E ;
Novellino, E .
CURRENT PHARMACEUTICAL DESIGN, 2002, 8 (08) :615-657
[3]   Central Nervous System Disposition and Metabolism of Fosdevirine (GSK2248761), a Non-Nucleoside Reverse Transcriptase Inhibitor: An LC-MS and Matrix-Assisted Laser Desorption/Ionization Imaging MS Investigation into Central Nervous System Toxicity [J].
Castellino, Stephen ;
Groseclose, M. Reid ;
Sigafoos, James ;
Wagner, David ;
de Serres, Mark ;
Polli, Joseph W. ;
Romach, Elizabeth ;
Myer, James ;
Hamilton, Brad .
CHEMICAL RESEARCH IN TOXICOLOGY, 2013, 26 (02) :241-251
[4]   Structural optimization of pyridine-type DAPY derivatives to exploit the tolerant regions of the NNRTI binding pocket [J].
Chen, Wenmin ;
Zhan, Peng ;
Daelemans, Dirk ;
Yang, Jiapei ;
Huang, Boshi ;
De Clercq, Erik ;
Pannecouque, Christophe ;
Liu, Xinyong .
EUROPEAN JOURNAL OF MEDICINAL CHEMISTRY, 2016, 121 :352-363
[5]   Discovery of 2-pyridone derivatives as potent HIV-1 NNRTIs using molecular hybridization based on crystallographic overlays [J].
Chen, Wenmin ;
Zhan, Peng ;
Rai, Diwakar ;
De Clercq, Erik ;
Pannecouque, Christophe ;
Balzarini, Jan ;
Zhou, Zhongxia ;
Liu, Huiqing ;
Liu, Xinyong .
BIOORGANIC & MEDICINAL CHEMISTRY, 2014, 22 (06) :1863-1872
[6]   Design, Synthesis, and Anti-HIV Evaluation of Novel Triazine Derivatives Targeting the Entrance Channel of the NNRTI Binding Pocket [J].
Chen, Xuwang ;
Meng, Qing ;
Qiu, Liyun ;
Zhan, Peng ;
Liu, Huiqing ;
De Clercq, Erik ;
Pannecouque, Christophe ;
Liu, Xinyong .
CHEMICAL BIOLOGY & DRUG DESIGN, 2015, 86 (01) :122-128
[7]   Discovery of Piperidine-Linked Pyridine Analogues as Potent Non-nucleoside HIV-1 Reverse Transcriptase Inhibitors [J].
Chen, Xuwang ;
Li, Yuanyuan ;
Ding, Shufang ;
Balzarini, Jan ;
Pannecouque, Christophe ;
De Clercq, Erik ;
Liu, Huiqing ;
Liu, Xinyong .
CHEMMEDCHEM, 2013, 8 (07) :1117-1126
[8]   Design, synthesis, anti-HIV evaluation and molecular modeling of piperidine-linked amino-triazine derivatives as potent non-nucleoside reverse transcriptase inhibitors [J].
Chen, Xuwang ;
Zhan, Peng ;
Liu, Xin ;
Cheng, Ziheng ;
Meng, Caicai ;
Shao, Siyuan ;
Pannecouque, Christophe ;
De Clercq, Erik ;
Liu, Xinyong .
BIOORGANIC & MEDICINAL CHEMISTRY, 2012, 20 (12) :3856-3864
[9]   Synthesis and biological evaluation of piperidine-substituted triazine derivatives as HIV-1 non-nucleoside reverse transcriptase inhibitors [J].
Chen, Xuwang ;
Zhan, Peng ;
Pannecouque, Christophe ;
Balzarini, Jan ;
De Clercq, Erik ;
Liu, Xinyong .
EUROPEAN JOURNAL OF MEDICINAL CHEMISTRY, 2012, 51 :60-66
[10]   Roles of conformational and positional adaptability in structure-based design of TMC125-R165335 (etravirine) and related non-nucleoside reverse transcriptase inhibitors that are highly potent and effective against wild-type and drug-resistant HIV-1 variants [J].
Das, K ;
Clark, AD ;
Lewi, PJ ;
Heeres, J ;
de Jonge, MR ;
Koymans, LMH ;
Vinkers, HM ;
Daeyaert, F ;
Ludovici, DW ;
Kukla, MJ ;
De Corte, B ;
Kavash, RW ;
Ho, CY ;
Ye, H ;
Lichtenstein, MA ;
Andries, K ;
Pauwels, R ;
de Béthune, MP ;
Boyer, PL ;
Clark, P ;
Hughes, SH ;
Janssen, PAJ ;
Arnold, E .
JOURNAL OF MEDICINAL CHEMISTRY, 2004, 47 (10) :2550-2560