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解决丙型肝炎病毒NS5B抑制剂中转运蛋白介导的外排和泛基因型抑制问题的结构-性质基础

Structure-Property Basis for Solving Transporter-Mediated Efflux and Pan-Genotypic Inhibition in HCV NS5B Inhibitors.

作者信息

Yeung Kap-Sun, Beno Brett R, Mosure Kathy, Zhu Juliang, Grant-Young Katherine A, Parcella Kyle, Anjanappa Prakash, Bora Rajesh Onkardas, Selvakumar Kumaravel, Wang Ying-Kai, Fang Hua, Krause Rudolph, Rigat Karen, Liu Mengping, Lemm Julie, Sheriff Steven, Witmer Mark, Tredup Jeffrey, Jardel Adam, Kish Kevin, Parker Dawn, Haskell Roy, Santone Kenneth, Meanwell Nicholas A, Soars Matthew G, Roberts Susan B, Kadow John F

机构信息

Bristol-Myers Squibb Research and Development, P.O. Box 5100, 5 Research Parkway, Wallingford, Connecticut 06492, United States.

Department of Discovery Chemistry, Biocon Bristol-Myers Squibb Research and Development Center, Biocon Park, Jigani Link Road, Bommasandra IV, Bangalore 560099, India.

出版信息

ACS Med Chem Lett. 2018 Nov 5;9(12):1217-1222. doi: 10.1021/acsmedchemlett.8b00379. eCollection 2018 Dec 13.

Abstract

In solving the P-gp and BCRP transporter-mediated efflux issue in a series of benzofuran-derived pan-genotypic palm site inhibitors of the hepatitis C virus NS5B replicase, it was found that close attention to physicochemical properties was essential. In these compounds, where both molecular weight (MW >579) and TPSA (>110 Å) were high, attenuation of polar surface area together with weakening of hydrogen bond acceptor strength of the molecule provided a higher intrinsic membrane permeability and more desirable Caco-2 parameters, as demonstrated by trifluoroacetamide and the benchmark -ethylamino analog . In addition, the tendency of these inhibitors to form intramolecular hydrogen bonds potentially contributes favorably to the improved membrane permeability and absorption. The functional group minimization that resolved the efflux problem simultaneously maintained potent inhibitory activity toward a gt-2 HCV replicon due to a switching of the role of substituents in interacting with the Gln414 binding pocket, as observed in gt-2a NS5B/inhibitor complex cocrystal structures, thus increasing the efficiency of the optimization. Noteworthy, a novel intermolecular S=O···C=O type interaction between the ligand sulfonamide oxygen atom and the carbonyl moiety of the side chain of Gln414 was observed. The insights from these structure-property studies and crystallography information provided a direction for optimization in a campaign to identify second generation pan-genotypic NS5B inhibitors.

摘要

在解决一系列苯并呋喃衍生的丙型肝炎病毒NS5B复制酶全基因型棕榈位点抑制剂中P-糖蛋白和乳腺癌耐药蛋白转运体介导的外排问题时,发现密切关注物理化学性质至关重要。在这些化合物中,分子量(MW>579)和总极性表面积(TPSA>110 Å)都很高,分子极性表面积的减小以及分子氢键受体强度的减弱提供了更高的内在膜通透性和更理想的Caco-2参数,如三氟乙酰胺和基准乙基氨基类似物所示。此外,这些抑制剂形成分子内氢键的趋势可能对改善膜通透性和吸收有有利贡献。解决外排问题的官能团最小化同时保持了对gt-2丙型肝炎病毒复制子的强效抑制活性,这是由于在gt-2a NS5B/抑制剂复合物共晶体结构中观察到取代基与Gln414结合口袋相互作用的角色转变,从而提高了优化效率。值得注意的是,观察到配体磺酰胺氧原子与Gln414侧链羰基部分之间存在一种新型的分子间S=O···C=O型相互作用。这些结构-性质研究和晶体学信息提供的见解为鉴定第二代全基因型NS5B抑制剂的优化工作指明了方向。

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