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A peptide derived from hepatitis C virus E2 envelope protein inhibits a post-binding step in HCV entry.

机译:源自丙型肝炎病毒E2包膜蛋白的肽抑制HCV进入的后结合步骤。

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摘要

The HCV envelope proteins E1 and E2 are required for virus binding to cellular receptors and pH-dependent fusion with endosomal membranes. Envelope protein interactions within this multistep process may provide novel targets for development of antiviral agents. To identify E1 and E2 regions involved in critical steps of HCV entry, we screened an E1E2 overlapping peptide library for inhibition of infection using a lentiviral reporter vector pseudotyped with E1E2 envelope proteins. A 16-residue polypeptide containing a portion of the E2 transmembrane domain (Peptide 75) inhibited HCV pseudoparticle infection with an IC50 of approximately 0.3microM and did not inhibit infection by VSV-g pseudoparticles at concentrations up to 50microM. Structure-activity analysis of Peptide 75 showed that antiviral activity was dependent upon L-configuration and hydrophobic character, and that the native sequence was required for maximal activity. Peptide 75 did not show virocidal activity against HCV pseudoparticles or other viruses. Temperature-shift experiments showed that the peptide acted at a post-binding step and that inhibition was further increased when used in combination with an anti-CD81 antibody previously shown to inhibit pseudoparticle entry at a post-binding step. These data suggest that interactions involving the C terminal region of E2 may play an important role in the HCV entry process.
机译:HCV包膜蛋白E1和E2是病毒与细胞受体结合以及pH依赖性与内体膜融合所必需的。在此多步骤过程中的信封蛋白质相互作用可能为抗病毒药物的开发提供新的目标。为了鉴定参与HCV进入关键步骤的E1和E2区,我们使用用E1E2包膜蛋白假型化的慢病毒报告载体筛选了E1E2重叠肽库,以抑制感染。包含一部分E2跨膜结构域(肽75)的16个残基多肽可抑制HCV假颗粒感染,IC50约为0.3microM,并且在浓度高达50microM时,不抑制VSV-g假颗粒的感染。肽75的结构活性分析表明,抗病毒活性取决于L-构型和疏水特性,并且最大活性需要天然序列。肽75对HCV假颗粒或其他病毒没有杀毒活性。温移实验表明,该肽在结合后步骤起作用,与先前显示可抑制假粒子进入结合后步骤的抗CD81抗体联合使用时,抑制作用进一步增强。这些数据表明,涉及E2的C末端区域的相互作用可能在HCV进入过程中起重要作用。

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