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Activity-based Protein Profiling Identifies a Host Enzyme Carboxylesterase 1 Which Is Differentially Active during Hepatitis C Virus Replication

机译:基于活动的蛋白质谱分析可识别宿主酶羧甲酸酯酶1该酶在丙型肝炎病毒复制过程中具有差异活性

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摘要

Hepatitis C virus (HCV) relies on many interactions with host cell proteins for propagation. Successful HCV infection also requires enzymatic activity of host cell enzymes for key post-translational modifications. To identify such enzymes, we have applied activity-based protein profiling to examine the activity of serine hydrolases during HCV replication. Profiling of hydrolases in Huh7 cells replicating HCV identified CES1 (carboxylesterase 1) as a differentially active enzyme. CES1 is an endogenous liver protein involved in processing of triglycerides and cholesterol. We observe that CES1 expression and activity were altered in the presence of HCV. The knockdown of CES1 with siRNA resulted in lower levels of HCV replication, and up-regulation of CES1 was observed to favor HCV propagation, implying an important role for this host cell protein. Experiments in HCV JFH1-infected cells suggest that CES1 facilitates HCV release because less intracellular HCV core protein was observed, whereas HCV titers remained high. CES1 activity was observed to increase the size and density of lipid droplets, which are necessary for the maturation of very low density lipoproteins, one of the likely vehicles for HCV release. In transgenic mice containing human-mouse chimeric livers, HCV infection also correlates with higher levels of endogenous CES1, providing further evidence that CES1 has an important role in HCV propagation.
机译:丙型肝炎病毒(HCV)依赖于与宿主细胞蛋白的许多相互作用来繁殖。成功的HCV感染还需要宿主细胞酶的酶促活性,以进行关键的翻译后修饰。为了鉴定此类酶,我们应用了基于活性的蛋白质谱分析,以检查HCV复制过程中丝氨酸水解酶的活性。在复制HCV的Huh7细胞中的水解酶谱分析确定CES1(羧酸酯酶1)为差异活性酶。 CES1是涉及甘油三酸酯和胆固醇加工的内源性肝蛋白。我们观察到在HCV存在下CES1的表达和活性发生了改变。用siRNA抑制CES1导致HCV复制水平降低,并且观察到CES1的上调有利于HCV繁殖,这暗示了该宿主细胞蛋白的重要作用。在HCV JFH1感染的细胞中进行的实验表明,CES1促进HCV释放,因为观察到的细胞内HCV核心蛋白较少,而HCV滴度仍然很高。观察到CES1的活性增加了脂滴的大小和密度,这对于非常低密度的脂蛋白(可能是HCV释放的媒介之一)的成熟是必需的。在含有人鼠嵌合体肝的转基因小鼠中,HCV感染还与更高水平的内源性CES1相关,进一步证明CES1在HCV传播中具有重要作用。

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