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首页> 外文期刊>Journal of viral hepatitis. >Sequential processing of hepatitis C virus core protein by host cell signal peptidase and signal peptide peptidase: a reassessment
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Sequential processing of hepatitis C virus core protein by host cell signal peptidase and signal peptide peptidase: a reassessment

机译:宿主细胞信号肽酶和信号肽肽酶对丙型肝炎病毒核心蛋白的顺序加工:重新评估

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Hepatitis C virus (HCV) core protein is believed to play critical roles in the virus morphogenesis and patho-genesis. In HCV polyprotein, core protein terminates with a signal peptide followed by E1 envelope protein. It has remained unclear whether cleavage by host cell signal peptidase (SP) at the core-E1 junction to generate the complete form of core protein, which is anchored in the endo-plasmic reticulum membrane, is absolutely required for cleavage within the signal peptide by host cell signal peptide peptidase (SPP) to liberate the mature form of core protein, which is then free for trafficking to lipid droplets. In this study, the possible sources of disagreement in published reports have been examined, and we conclude that a product generated upon inhibition of SP-catalysed cleavage at the core-E1 junction in heterologous expression systems was incorrectly identified as mature core protein. Moreover, inhibition of this cleavage in the most relevant model of human hepatoma cells replicating a full-length HCV genome was shown to abolish interaction of core protein with lipid droplets and production of infectious progeny virus. These results firmly establish that SPP-catalysed liberation of mature core protein is absolutely dependent on prior cleavage by SP at the correct core-El site to generate the complete form of core protein, consistent with this obligatory order of processing playing a role in HCV infectious cycle.
机译:丙型肝炎病毒(HCV)核心蛋白被认为在病毒的形态发生和致病过程中起着至关重要的作用。在HCV多蛋白中,核心蛋白终止于信号肽,然后是E1包膜蛋白。尚不清楚是否绝对需要通过核心E1连接处的宿主细胞信号肽酶(SP)进行裂解以生成完整形式的锚定在内质网膜中的核心蛋白,对于通过宿主细胞信号肽肽酶(SPP)释放核心蛋白的成熟形式,然后自由运输成脂质小滴。在这项研究中,已经检查了发表的报告中可能存在的分歧,我们得出的结论是,在异源表达系统中抑制SP催化的核-E1连接处的裂解产生的产物被错误地鉴定为成熟的核心蛋白。而且,在复制全长HCV基因组的人类肝癌细胞的最相关模型中,这种切割的抑制显示消除了核心蛋白与脂质滴的相互作用以及传染性子代病毒的产生。这些结果牢固地证明,SPP催化的成熟核心蛋白的释放绝对依赖于SP在正确的核心El-位点进行的事先切割,以生成完整形式的核心蛋白,这与在HCV传染性中起作用的这种强制加工顺序相一致。周期。

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