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首页> 外文期刊>Journal of Molecular Biology >A NOVEL BASIS FOR CAPSID STABILIZATION BY ANTIVIRAL COMPOUNDS
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A NOVEL BASIS FOR CAPSID STABILIZATION BY ANTIVIRAL COMPOUNDS

机译:通过抗病毒化合物稳定驾驶室内的新基础

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Picornaviruses are inactivated by a family of hydrophobic drugs that bind at an internal site in the viral capsid and inhibit viral uncoating. A basis for the capsid stabilization previously unrecognized is revealed by molecular dynamics simulations of the antiviral drug WIN52084s bound to a hydrophobic. pocket of solvated human rhinovirus 14. Isothermal compressibilities of the complex and human rhinovirus 14 without the antiviral drug calculated from density fluctuations show that the presence of WIN52084s increases the compressibility of the viral capsid near the antiviral drug. This counterintuitive result is understandable on the basis of the empirical evidence of thermal melting temperatures and protein-folding entropies of globular proteins. Based on this evidence, we propose that a larger compressibility from drug binding confers greater thermal stability to capsid proteins by increasing the conformational entropy of capsids, thereby diminishing the entropy gain with uncoating. We suggest that compressibility is fundamental to the structural integrity of viral capsids and that examination of compressibility and antiviral activity will provide insights into the disassembly process. (C) 1995 Academic Press Limited [References: 35]
机译:微小RNA病毒被一系列疏水性药物灭活,这些疏水性药物在病毒衣壳的内部部位结合并抑制病毒的脱壳。通过与疏水蛋白结合的抗病毒药物WIN52084s的分子动力学模拟,揭示了衣壳稳定先前未被认识的基础。溶剂化的人类鼻病毒14的袋中。没有通过密度波动计算得到抗病毒药物的复合物和人类鼻病毒14的等温可压缩性表明WIN52084s的存在增加了抗病毒药物附近病毒衣壳的可压缩性。根据热融温度和球状蛋白质的蛋白质折叠熵的经验证据,可以理解这种反直觉的结果。基于此证据,我们提出通过增加衣壳的构象熵,从而从药物结合中获得更大的可压缩性,从而赋予衣壳蛋白更大的热稳定性,从而通过脱壳减少熵的增加。我们建议可压缩性是病毒衣壳结构完整性的基础,而可压缩性和抗病毒活性的检查将提供对拆卸过程的深入了解。 (C)1995 Academic Press Limited [参考:35]

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