...
首页> 外文期刊>Molecular Immunology >Strain-to-strain difference of V protein of measles virus affects MDA5-mediated IFN-beta-inducing potential.
【24h】

Strain-to-strain difference of V protein of measles virus affects MDA5-mediated IFN-beta-inducing potential.

机译:麻疹病毒V蛋白的株间差异影响MDA5介导的IFN-β诱导潜力。

获取原文
获取原文并翻译 | 示例
           

摘要

Laboratory-adapted and vaccine strains of measles virus (MV) induce type I interferon (IFN) in infected cells to a far greater extent than wild-type strains. We investigated the mechanisms for this differential type I IFN production in cells infected with representative MV strains. The overexpression of the wild-type V protein suppressed melanoma differentiation-associated gene 5 (MDA5)-induced IFN-beta promoter activity, while this was not seen in A549 cells expressing CD150 transfected with the V protein of the vaccine strain. The V proteins of the wild-type also suppressed poly I:C-induced IFN regulatory factor 3 (IRF-3) dimerization. The V proteins of the wild-type and vaccine strain did not affect retinoic acid-inducible gene 1 (RIG-I)- or toll-IL-1R homology domain-containing adaptor molecule 1 (TICAM-1)-induced IFN-beta promoter activation. We identified an amino acid substitution of the cysteine residue at position 272 (which is conserved among paramyxoviruses) to an arginine residue in the V protein of the vaccine strain. Only the V protein possessing the 272C residue binds to MDA5. The mutation introduced into the wild-type V protein (C272R) was unable to suppress MDA5-induced IRF-3 nuclear translocation and IFN-beta promoter activation as seen in the V proteins of the vaccine strain, whereas the mutation introduced in the vaccine strain V protein (R272C) was able to inhibit MDA5-induced IRF-3 and IFN-beta promoter activation. The other 6 residues of the vaccine strain V sequence inconsistent with the authentic sequence of the wild-type V protein barely affected the IRF-3 nuclear translocation. These data suggested that the structural difference of vaccine MV V protein hampers MDA5 blockade and acts as a nidus for the spread/amplification of type I IFN induction. Ultimately, measles vaccine strains have two modes of IFN-beta-induction for their attenuation: V protein mutation and production of defective interference (DI) RNA.
机译:实验室适应性麻疹病毒疫苗(MV)和疫苗株在感染细胞中诱导的I型干扰素(IFN)的程度远高于野生型菌株。我们研究了在代表性的MV菌株感染的细胞中这种I型干扰素产生差异的机制。野生型V蛋白的过表达抑制了黑色素瘤分化相关基因5(MDA5)诱导的IFN-β启动子活性,而在表达用疫苗株的V蛋白转染的CD150的A549细胞中未发现这种现象。野生型的V蛋白还抑制了聚I:C诱导的IFN调节因子3(IRF-3)二聚化。野生型和疫苗株的V蛋白不影响视黄酸诱导基因1(RIG-1)或toll-IL-1R同源域包含适配器分子1(TICAM-1)诱导的IFN-β启动子激活。我们确定了在疫苗菌株V蛋白中的272位(在副粘病毒中保守)的半胱氨酸残基的氨基酸取代。仅具有272C残基的V蛋白与MDA5结合。如疫苗株的V蛋白所示,引入野生型V蛋白(C272R)的突变无法抑制MDA5诱导的IRF-3核易位和IFN-β启动子激活,而疫苗株中引入的突变V蛋白(R272C)能够抑制MDA5诱导的IRF-3和IFN-β启动子激活。疫苗株V序列的其他6个残基与野生型V蛋白的真实序列不一致,几乎不影响IRF-3核易位。这些数据表明,疫苗MV V蛋白的结构差异阻碍了MDA5的阻断,并充当了I型IFN诱导的扩散/扩增的基础。最终,麻疹疫苗株的减毒具有两种干扰素-β诱导方式:V蛋白突变和缺陷干扰(DI)RNA的产生。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号