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Efficient Inhibition of Hepatitis B Virus Infection by Acylated Peptides Derived from the Large Viral Surface Protein†

机译:有效抑制大病毒表面蛋白衍生的酰化肽对乙型肝炎病毒感染的作用†

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摘要

The lack of an appropriate in vitro infection system for the major human pathogen hepatitis B virus (HBV) has prevented a molecular understanding of the early infection events of HBV. We used the novel HBV-infectible cell line HepaRG and primary human hepatocytes to investigate the interference of infection by HBV envelope protein-derived peptides. We found that a peptide consisting of the authentically myristoylated N-terminal 47 amino acids of the pre-S1 domain of the large viral envelope protein (L protein) specifically prevented HBV infection, with a 50% inhibitory concentration (IC50) of 8 nM. The replacement of myristic acid with other hydrophobic moieties resulted in changes in the inhibitory activity, most notably by a decrease in the IC50 to picomolar concentrations for longer unbranched fatty acids. The obstruction of HepaRG cell susceptibility to HBV infection after short preincubation times with the peptides suggested that the peptides efficiently target and inactivate a receptor at the hepatocyte surface. Our data both shed light on the molecular mechanism of HBV entry into hepatocytes and provide a basis for the development of potent hepadnaviral entry inhibitors as a novel therapeutic concept for the treatment of hepatitis Β.
机译:对于主要的人类病原体乙型肝炎病毒(HBV)缺乏合适的体外感染系统,已经无法从分子上了解HBV的早期感染事件。我们使用新型的HBV感染性细胞系HepaRG和原代人肝细胞来研究HBV包膜蛋白衍生肽对感染的干扰。我们发现,由大病毒包膜蛋白(L蛋白)的前S1域的真实的肉豆蔻酰化的N末端47个氨基酸组成的肽以8 nM的50%抑制浓度(IC50)特异性地预防了HBV感染。用其他疏水性部分取代肉豆蔻酸导致抑制活性的变化,最显着的是较长的直链脂肪酸的IC50降低至皮摩尔浓度。在与肽段短的预温育时间后,HepaRG细胞对HBV感染的敏感性受到阻碍,这表明该肽段有效地靶向并灭活了肝细胞表面的受体。我们的数据既阐明了乙肝病毒进入肝细胞的分子机制,也为开发有效的嗜肝DNA病毒进入抑制剂作为一种新的治疗肝炎Β的概念提供了基础。

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