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Single amino acid mutation of SR-BI decreases infectivity of hepatitis C virus derived from cell culture in a cell culture model

机译:SR-BI的单个氨基酸突变会降低细胞培养模型中源自细胞培养的丙型肝炎病毒的感染性

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AIM To investigate the effect of a single amino acid mutation in human class B scavenger receptor I (SR-BI) on the infectivity of cell culture-derived hepatitis C virus (HCVcc) in SR-BI knock-down Huh7-siSR-BI cells. METHODS Site-directed mutagenesis was used to construct the SR-BI S112F mutation, and the mutation was confirmed by nucleotide sequencing. SR-BI knock-down Huh7-siSR-BI cells were transfected with SR-BI S112F, SR-BI wild type (WT) and control plasmids, and then infected with HCVpp (HCV pseudoparticles) and hepatitis C virus derived from cell culture (HCVcc). A fluorescence assay was performed to analyze the effect of the S112F mutation on HCV entry; quantitative real-time PCR, immunofluorescence, and Western blot assays were used to analyze the effect of the S112F mutation on HCV infectivity. CHO cells expressing WT and SR-BI S112F were incubated with the HCV E2 protein expressed in HEK 293T cells, and flow cytometry was performed to examine the ability of SR-BI S112F to bind to the HCV E2 protein. Huh7-siSR-BI cells were transfected with SR-BI WT and the S112F mutant, and then DiI-HDL was added and images captured under the microscope to assess the ability of SR-BI S112F to take up HDL. RESULTS The SR-BI S112F mutation was successfully constructed. The S112F mutation decreased the expression of the SR-BI mRNA and protein. SR-BI S112F decreased HCV entry and HCVcc infectivity in Huh7-siSR-BI cells. The S112F mutation impaired the binding of SR-BI to HCV E2 protein and decreased the HDL uptake of SR-BI. CONCLUSION The S112F single amino acid mutation in SR-BI decreased the levels of the SR-BI mRNA and protein, as well as the ability of SR-BI to bind to the HCV E2 protein. Amino acid 112 in SR-BI plays important roles in HCV entry and the infectivity of HCVcc in vitro .
机译:目的研究人类B类清道夫受体I(SR-BI)中的单个氨基酸突变对SR-BI抑制的Huh7-siSR-BI细胞中细胞培养衍生的丙型肝炎病毒(HCVcc)感染性的影响。方法采用定点诱变技术构建SR-BI S112F突变,并通过核苷酸测序确定该突变。用SR-BI S112F,SR-BI野生型(WT)和对照质粒转染SR-BI敲除的Huh7-siSR-BI细胞,然后感染HCVpp(HCV伪颗粒)和源自细胞培养的丙型肝炎病毒( HCVcc)。进行荧光分析以分析S112F突变对HCV进入的影响;定量实时PCR,免疫荧光和Western印迹分析用于分析S112F突变对HCV感染性的影响。将表达WT和SR-BI S112F的CHO细胞与HEK 293T细胞中表达的HCV E2蛋白一起孵育,并进行流式细胞术以检查SR-BI S112F与HCV E2蛋白结合的能力。用SR-BI WT和S112F突变体转染Huh7-siSR-BI细胞,然后添加DiI-HDL并在显微镜下拍摄图像以评估SR-BI S112F摄取HDL的能力。结果成功构建了SR-BI S112F突变。 S112F突变降低了SR-BI mRNA和蛋白的表达。 SR-BI S112F降低了Huh7-siSR-BI细胞的HCV进入和HCVcc感染性。 S112F突变削弱了SR-BI与HCV E2蛋白的结合,并降低了SR-BI对HDL的吸收。结论SR-BI中的S112F单氨基酸突变降低了SR-BI mRNA和蛋白的水平,以及SR-BI与HCV E2蛋白结合的能力。 SR-BI中的112号氨基酸在HCV进入和HCVcc体外感染中起着重要作用。

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