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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Biophysical characterization of the fusogenic region of HCV envelope glycoprotein E1.
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Biophysical characterization of the fusogenic region of HCV envelope glycoprotein E1.

机译:HCV包膜糖蛋白E1融合区的生物物理特征。

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We have studied the binding and interaction of the peptide E1(FP) with various model membranes. E1(FP) is derived from the amino acid segment 274-291 of the hepatitis C virus envelope glycoprotein E1, which was previously proposed to host the peptide responsible for fusion to target membranes. In the present study we addressed the changes which take place upon E1(FP) binding in both the peptide and the phospholipid bilayer, respectively, through a series of complementary experiments. We show that peptide E1(FP) binds to and interacts with phospholipid model membranes, modulates the polymorphic phase behavior of membrane phospholipids, is localized in a shallow position in the membrane and interacts preferentially with cholesterol. The capability of modifying the biophysical properties of model membranes supports its role in HCV-mediated membrane fusion and suggests that the mechanism of membrane fusion elicited by class I and II fusion proteins might be similar.
机译:我们已经研究了肽E1(FP)与各种模型膜的结合和相互作用。 E1(FP)源自丙型肝炎病毒包膜糖蛋白E1的氨基酸区段274-291,先前曾提出该宿主具有负责与靶膜融合的肽。在本研究中,我们通过一系列补充实验解决了肽和磷脂双层中E1(FP)结合后发生的变化。我们表明,肽E1(FP)结合并与磷脂模型膜相互作用,调节膜磷脂的多态相行为,位于膜中的浅层,并优先与胆固醇相互作用。修饰模型膜的生物物理特性的能力支持其在HCV介导的膜融合中的作用,并表明由I类和II类融合蛋白引起的膜融合机制可能相似。

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