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中文摘要
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这项申请提出了对与以下相关的小核糖核酸病毒特性的计算研究 抗病毒活性和受体识别,以及球的可压缩性和结构稳定性 蛋白质。短小病毒科病毒家族的成员是广泛的人类病原体 以及由于附着在细胞表面受体而引发的动物疾病。相当大的努力集中在 小核糖核酸病毒抗病毒化合物的研究进展。抗病毒活性的机制,以及 受体识别的物理/化学基础将通过分子动力学模拟研究来检验。 需要解决的具体问题包括抗病毒化合物在体内结合的长期动态影响 人鼻病毒(HRV)内部疏水袋对病毒构象特性的影响。基座 根据先前的结果,有人提出,抗病毒化合物的长程效应改变了 5倍对称轴上的残基,这一反应有助于Win的抗病毒活性 化合物。我们将使用大规模的模拟来探索这个问题。此外,自由能方法 将用于探讨细胞间黏附分子-1(ICAM-1)对HRV和 柯萨奇病毒(CV)。微小核糖核酸病毒受体结构测定的新进展 来自低温电子显微镜重建的复合体为计算提供了新的机会 分析以阐明受体识别。受体氨基酸突变对病毒衣壳结合的影响 无法从结构上解释的,将使用自由能模拟进行检查。最后, 抗病毒活性和受体识别的机制与基本的物理性质有关 以及基于与稳定性、可压缩性和溶剂化相关问题的计算研究 也提出了一些建议。MD模拟的详细信息将被用来阐明一个新的 通过定义蛋白质可压缩性和能量学的基础来识别蛋白质压缩性和能量学之间的对应 蛋白质中埋藏电荷的稳定化。水合水的可压缩性与蛋白质分析 还将探讨溶液的可压缩性。
英文摘要
This application proposes computational investigations of the properties of picornaviruses associated with antiviral activity and receptor recognition, and of the compressibility and structural: stability of globular proteins. Members of the virus family of Picornaviridae are causative agents of a broad spectrum of human and animal diseases initiated by attachment to cell surface receptors. Considerable effort has focused on the development of antiviral compounds against picornaviruses. The mechanism of antiviral activity, and the physical/chemical basis of receptor recognition will be examined by molecular dynamics simulation studies. Specific issues to be addressed include the long-range dynamic effects of antiviral compounds binding in an internal hydrophobic pocket of human rhinovirus (HRV) on the conformational properties of the virus. Based on previous results, it is proposed that long-range effects of antiviral compounds alter the dynamics of residues at the 5-fold symmetry axis, and that this response contributes to the antiviral activity of WIN compounds. We will explore this question using large-scale simulations. In addition, free-energy methods will be used to probe the basis of intercellular adhesion molecule 1 (ICAM-1) specificity for HRV and coxsackievirus (CV). Recent progress in the determination of structures of the picornavirus-receptor complexes from cryo-electron microscopy reconstruction provide a new opportunity for computational analysis to elucidate receptor recognition. Effects of receptor amino acid mutations on virus capsid binding, which cannot be explained from the structures, will be examined using free energy simulations. Finally, mechanisms of antiviral activity and receptor recognition are associated with fundamental physical properties of proteins, and computational studies based on questions related to stability, compressibility and solvation are also proposed. The detailed information of MD simulations will be exploited to elucidate a newly recognized correspondence between protein compressibility and energetics by defining the basis for stabilization of buried charge in proteins. The compressibility of hydration waters and analysis of protein solution compressibilities will also be probed.
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INVESTIGATION OF CONFORMATIONAL PROPERTIES OF RESIDUES NEAR 5-FOLD SYMMETRY AXI
  • 批准号:
    8364187
  • 项目类别:
  • 资助金额:
    $0.2万
  • 财政年份:
    2011
  • 负责人:
    CAROL B. POST
  • 依托单位:
Nuclear Magnetic Resonance
  • 批准号:
    8182778
  • 项目类别:
  • 资助金额:
    $14.59万
  • 财政年份:
    2010
  • 负责人:
    CAROL B. POST
  • 依托单位:
TO INVESTIGATE LONG-RANGE DYNAMIC EFFECTS FROM ANTIVIRAL COMPOUNDS BOUND IN THE
  • 批准号:
    7956252
  • 项目类别:
  • 资助金额:
    $0.08万
  • 财政年份:
    2009
  • 负责人:
    CAROL B. POST
  • 依托单位:
NMR structure of peptide and protein complexes
  • 批准号:
    7922805
  • 项目类别:
  • 资助金额:
    $16.22万
  • 财政年份:
    2009
  • 负责人:
    CAROL B. POST
  • 依托单位:
海外基金