首页> 外文期刊>Journal of Medical Virology >Differential cellular immune responses to wild-type and attenuated edmonston tag measles virus strains are primarily defined by the viral phosphoprotein gene.
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Differential cellular immune responses to wild-type and attenuated edmonston tag measles virus strains are primarily defined by the viral phosphoprotein gene.

机译:对野生型和减毒的埃德蒙斯顿标签麻疹病毒株的差异性细胞免疫反应主要由病毒磷蛋白基因定义。

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The measles virus phosphoprotein (P) gene encodes the P, V, and C proteins, which have multiple functions including type I interferon (IFN) inhibition. With a focus on viral immune modulation, we conducted a study on healthy vaccinees (n=179) to compare cytokine secretion patterns/cell frequencies and gene expression after in vitro encounter with a highly attenuated strain of measles virus (MVEdmtag), wild-type MV (MVwt) or recombinant MVEdmtag expressing the wild-type P gene (MVwtP). Cytokines were quantified by ELISA and Elispot. Gene expression profiling was performed using real-time PCR. We found differential MV-specific cytokine responses to all detected cytokines characterized by significantly higher cytokine levels (P<0.001) and higher frequencies (P<0.0001) of cytokine-producing cells after stimulation with the highly attenuated MVEdmtag strain in comparison with MVwt or MVwtP. Furthermore, gene expression profiling revealed significant cytokine suppression at the transcriptional level for viruses encoding the functional wt P gene, compared to attenuated MVEdmtag (P<0.05). Using lentivirus-mediated stable expression of P gene-encoded proteins in human cell lines, we demonstrated that the expression of the functional wt V protein significantly down-modulated the induction of IFNs type I, II, and III in lymphocytes and monocytes. Taken together our results indicate that Th1, Th2, and innate/inflammatory cytokine responses in vaccinees are suppressed both at the protein and transcriptional level by viruses expressing the functional wt P gene products. The functional P gene-encoded viral proteins (particularly V proteins) emerge as crucial immune evasion factors for modulating and shaping the measles virus-specific cytokine responses in humans.
机译:麻疹病毒磷蛋白(P)基因编码P,V和C蛋白,具有多种功能,包括I型干扰素(IFN)抑制。以病毒免疫调节为重点,我们对健康疫苗(n = 179)进行了研究,比较了在体外与高度减毒的麻疹病毒(MVEdmtag)野生型菌株接触后的细胞因子分泌模式/细胞频率和基因表达。表达野生型P基因(MVwtP)的MV(MVwt)或重组MVEdmtag。细胞因子通过ELISA和Elispot定量。使用实时PCR进行基因表达谱分析。我们发现,以高度减毒的MVEdmtag菌株刺激后,与MVwt或MVwtP相比,对所有检测到的细胞因子的MV特异性细胞因子的反应不同,这些因子的特点是细胞因子水平显着更高(P <0.001),频率更高(P <0.0001)。 。此外,与减毒的MVEdmtag相比,基因表达谱分析显示,编码功能性wt P基因的病毒在转录水平上具有明显的细胞因子抑制作用(P <0.05)。使用慢病毒介导的人类细胞系中P基因编码蛋白的稳定表达,我们证明了功能wt V蛋白的表达显着下调了淋巴细胞和单核细胞中I,II和III型IFN的诱导。总之,我们的结果表明,表达功能性wt P基因产物的病毒在疫苗和蛋白质方面都抑制了疫苗中的Th1,Th2和先天/炎症细胞因子反应。功能性P基因编码的病毒蛋白(特别是V蛋白)作为调节和塑造人麻疹病毒特异性细胞因子反应的关键免疫逃逸因子而出现。

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