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基于结构的一系列吡咯烷流感病毒神经氨酸酶抑制剂中新型疏水结合相互作用的表征与优化

Structure-based characterization and optimization of novel hydrophobic binding interactions in a series of pyrrolidine influenza neuraminidase inhibitors.

作者信息

Maring Clarence J, Stoll Vincent S, Zhao Chen, Sun Minghua, Krueger Allan C, Stewart Kent D, Madigan Darold L, Kati Warren M, Xu Yibo, Carrick Robert J, Montgomery Debra A, Kempf-Grote Anita, Marsh Kennan C, Molla Akhteruzzaman, Steffy Kevin R, Sham Hing L, Laver W Graeme, Gu Yu-gui, Kempf Dale J, Kohlbrenner William E

机构信息

Department of Infectious Disease Research and Advanced Technology, Global Pharmaceutical R & D, Abbott Laboratories, Abbott Park, Illinois 60064, USA.

出版信息

J Med Chem. 2005 Jun 16;48(12):3980-90. doi: 10.1021/jm049276y.

Abstract

The structure-activity relationship (SAR) of a novel hydrophobic binding interaction within a subsite of the influenza neuraminidase (NA) active site was characterized and optimized for a series of trisubstituted pyrrolidine inhibitors modified at the 4-position. Previously, potent inhibitors have targeted this subsite with hydrophilic substituents such as amines and guanidines. Inhibitor-bound crystal structures revealed that hydrophobic substituents with sp(2) hybridization could achieve optimal interactions by virtue of a low-energy binding conformation and favorable pi-stacking interactions with the residue Glu119. From a lead methyl ester, investigation of five-membered heteroaromatic substituents at C-4 produced a 3-pyrazolyl analogue that improved activity by making a targeted hydrogen bond with Trp178. The SAR of substituted vinyl substituents at C-4 produced a Z-propenyl analogue with improved activity over the lead methyl ester. The C-1 ethyl ester prodrugs of the substituted C-4 vinyl analogues gave compounds with excellent oral bioavailability (F > 60%) when dosed in rat.

摘要

对流感神经氨酸酶(NA)活性位点亚位点内一种新型疏水结合相互作用的构效关系(SAR)进行了表征,并针对一系列在4位修饰的三取代吡咯烷抑制剂进行了优化。此前,强效抑制剂已用胺和胍等亲水性取代基靶向该亚位点。抑制剂结合的晶体结构表明,具有sp(2)杂化的疏水取代基可通过低能结合构象以及与残基Glu119的有利π-堆积相互作用实现最佳相互作用。从先导甲酯出发,对C-4位的五元杂芳基取代基进行研究,得到了一种3-吡唑基类似物,该类似物通过与Trp178形成靶向氢键提高了活性。C-4位取代乙烯基取代基的SAR产生了一种Z-丙烯基类似物,其活性优于先导甲酯。当在大鼠中给药时,取代的C-4乙烯基类似物的C-1乙酯前药得到了具有优异口服生物利用度(F>60%)的化合物。

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