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首页> 外文期刊>European Biophysics Journal >Studies on viral fusion peptides: The distribution of lipophilic and electrostatic potential over the peptide determines the angle of insertion into a membrane
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Studies on viral fusion peptides: The distribution of lipophilic and electrostatic potential over the peptide determines the angle of insertion into a membrane

机译:病毒融合肽的研究:肽上亲脂性和静电势的分布决定了插入膜的角度

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The oblique insertion of type 1 viral fusion peptides into the cell membrane of the host cell has been shown previously to be an essential element of viral fusion. The actual physical explanation of the cause of the oblique insertion has been the subject of speculation. In this study the physical properties of the fusion peptide surface have been determined computationally and compared to the tilt angles determined both experimentally and by the use of molecular dynamics. It has been shown that the relationship between the distribution of lipophilic potential over the peptide surface and the peptide geometry control the tilt angle of the peptide in a biomimetic DMPC bilayer whereas the depth of penetration into the bilayer appears to be determined by the electrostatic potential and hydrogen bonding at the C-terminus.
机译:先前已经显示出将1型病毒融合肽倾斜插入宿主细胞的细胞膜是病毒融合的基本要素。对倾斜插入的原因的实际物理解释一直是推测的主题。在这项研究中,已通过计算确定了融合肽表面的物理性质,并将其与通过实验和利用分子动力学确定的倾斜角进行了比较。已经表明,亲脂性电位在肽表面上的分布与肽几何形状之间的关系控制了仿生DMPC双层中肽的倾斜角,而渗透到双层中的深度似乎由静电势和C端的氢键。

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