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Classical Swine Fever Virus Interferes with Cellular Antiviral Defense: Evidence for a Novel Function of Npro

机译:古典猪瘟病毒干扰细胞抗病毒防御:Npro的新功能的证据。

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摘要

Classical swine fever virus (CSFV) replicates efficiently in cell lines and monocytic cells, including macrophages (MΦ), without causing a cytopathic effect or inducing interferon (IFN) secretion. In the present study, the capacity of CSFV to interfere with cellular antiviral activity was investigated. When the porcine kidney cell line SK-6 was infected with CSFV, there was a 100-fold increased capacity to resist to apoptosis induced by polyinosinic-polycytidylic acid [poly(IC)], a synthetic double-stranded RNA. In MΦ, the virus infection inhibited poly(IC)-induced alpha/beta IFN (type I IFN) synthesis. This interference with cellular antiviral defense correlated with the presence of the viral Npro gene. Mutants lacking the Npro gene (ΔNpro CSFV) did not protect SK-6 cells from poly(IC)-induced apoptosis, despite growth properties and protein expression levels similar to those of the wild-type virus. Furthermore, ΔNpro CSFV did not prevent poly(IC)-induced type I IFN production in MΦ but rather induced type I IFN in the absence of poly(IC) in both MΦ and the porcine kidney cell line PK-15, but not in SK-6 cells. With MΦ and PK-15, an impaired replication of the ΔNpro CSFV compared with wild-type virus was noted. In addition, ΔNpro CSFV, but not wild-type CSFV, could interfere with vesicular stomatitis virus replication in PK-15 cells. Taken together, these results provide evidence for a novel function associated with CSFV Npro with respect to the inhibition of the cellular innate immune system.
机译:经典猪瘟病毒(CSFV)可在细胞系和单核细胞(包括巨噬细胞(MΦ))中高效复制,而不会引起细胞病变或诱导干扰素(IFN)分泌。在本研究中,研究了CSFV干扰细胞抗病毒活性的能力。当猪肾细胞系SK-6感染CSFV时,其抵抗由合成双链RNA聚肌苷酸-聚胞苷酸[poly(IC)]诱导的凋亡的能力提高了100倍。在MΦ中,病毒感染抑制了聚(IC)诱导的α/βIFN(I型IFN)合成。细胞抗病毒防御的这种干扰与病毒N pro 基因的存在有关。缺乏N pro 基因(ΔN pro CSFV)的突变体不能保护SK-6细胞免受poly(IC)诱导的细胞凋亡,尽管其生长特性和蛋白质表达水平与野生型病毒的那些。此外,ΔN pro CSFV不能阻止MΦ和猪肾细胞系中都没有聚(IC)诱导的MΦ诱导的I型IFN的产生,而是阻止了不存在聚(IC)诱导的I型IFN的诱导。 PK-15,但不在SK-6细胞中。与野生型病毒相比,使用MΦ和PK-15时,注意到ΔN pro CSFV的复制受损。此外,ΔN pro CSFV,而不是野生型CSFV,可能会干扰水疱性口炎病毒在PK-15细胞中的复制。综上所述,这些结果提供了与CSFV N pro 相关的新功能的证据,该功能与抑制细胞先天免疫系统有关。

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