...
首页> 外文期刊>Journal of chemical information and modeling >Binding of Sulfoxaflor to Aplysia californica-AChBP: Computational Insights from Multiscale Approaches
【24h】

Binding of Sulfoxaflor to Aplysia californica-AChBP: Computational Insights from Multiscale Approaches

机译:苏氟苏仑含与Aplysia Californica-ACHBP的结合:来自多尺度方法的计算见解

获取原文
获取原文并翻译 | 示例
           

摘要

Structural features and binding properties of sulfoxaflor (SFX) with Ac-AChBP, the surrogate of the insect nAChR ligand binding domain (LBD), are reported herein using various complementary molecular modeling approaches (QM, molecular docking, molecular dynamics, and QM/QM'). The different SFX stereoisomers show distinct behaviors in terms of binding and interactions with Ac-AChBP. Molecular docking and Molecular Dynamics (MD) simulations highlight the specific intermolecular contacts involved in the binding of the different SFX isomers and the relative contribution of the SFX functional groups. QM/QM' calculations provide further insights and a significant refinement of the geometric and energetic contributions of the various residues leading to a preference for the SS and RR stereoisomers. Notable differences in terms of binding interactions are pointed out for the four stereoisomers. The results point out the induced fit of the Ac-AChBP binding site according to the SFX stereoisomer. In this process, the water molecules-mediated contacts play a key role, their energetic contribution being among the most important for the various stereoisomers. In all cases, the interaction with Trp147 is the major binding component, through CH center dot center dot center dot pi and pi center dot center dot center dot pi interactions. This study provides a rationale for the binding of SFX to insect nAChR, in particular with respect to the new class of sulfoximine-based insect nAChR competitive modulators, and points out the requirements of various levels of theory for an accurate description of ligand-receptor interactions.
机译:用AC-ACHBP的SulfoxaF11(SFX)的结构特征和结合特征,昆虫Nachr配体结合结构域(LBD)的替代在本文中使用各种互补分子建模方法(QM,分子对接,分子动力学和QM / QM ')。不同的SFX立体异构体在与AC-ACHBP的结合和相互作用方面表现出不同的行为。分子对接和分子动力学(MD)模拟突出了不同SFX异构体结合的特定分子间触点和SFX官能团的相对贡献。 QM / QM的计算提供了进一步的见解,并显着改进了各种残留物的几何和能量贡献,从而偏好于SS和RR立体异构体。对于四个立体异构体指出结合相互作用方面的显着差异。结果指出根据SFX立体异构体的AC-ACHBP结合位点的诱导拟合。在该过程中,水分子介导的触点起着关键作用,它们的能量贡献是各种立体异构体最重要的。在所有情况下,通过CH中心点中心点中心点PI和PI中心点中心点中心点PI相互作用,与TRP147的相互作用是主要的结合组分,通过CH中心点中心点中心点PI和PI中心。本研究提供了SFX与昆虫NACHR的结合的理由,特别是关于新类磺酰昔胺的昆虫NACHR竞争调节剂,并指出了各种理论水平的要求,以准确描述配体 - 受体相互作用。

著录项

  • 来源
  • 作者单位

    Univ Nantes CEISAM UMR CNRS 6230 Fac Sci &

    Tech 2 Rue Houssiniere BP 92208 F-44322 Nantes France;

    Univ Illinois Roger Adams Lab 600 South Mathews Ave Urbana IL 61801 USA;

    Univ Nantes CEISAM UMR CNRS 6230 Fac Sci &

    Tech 2 Rue Houssiniere BP 92208 F-44322 Nantes France;

    Univ Nantes CEISAM UMR CNRS 6230 Fac Sci &

    Tech 2 Rue Houssiniere BP 92208 F-44322 Nantes France;

    Univ Orleans Inst Chim Organ Analyt UMR CNRS 7311 Rue Chartres BP 6759 F-45067 Orleans 2 France;

    Univ Nantes CEISAM UMR CNRS 6230 Fac Sci &

    Tech 2 Rue Houssiniere BP 92208 F-44322 Nantes France;

    Univ Nantes CEISAM UMR CNRS 6230 Fac Sci &

    Tech 2 Rue Houssiniere BP 92208 F-44322 Nantes France;

    Univ Orleans Lab Biol Ligneux &

    Grandes Cultures USC INRA 1328 1328 Rue Chartres BP 6759 F-45067 Orleans 2 France;

    Univ Nantes CEISAM UMR CNRS 6230 Fac Sci &

    Tech 2 Rue Houssiniere BP 92208 F-44322 Nantes France;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;化学工业;
  • 关键词

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号