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Development of molecular and cellular tools to decipher the type I IFN pathway of the common vampire bat

机译:分解分子和细胞工具的开发,解读了普通吸血鬼蝙蝠的I IFN途径

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AbstractThough the common vampire bat,Desmodus rotundus, is known as the main rabies virus reservoir in Latin America, no tools are available to investigate its antiviral innate immune system. To characterize the IFN-I pathway, we established an immortalized cell line from aD.?rotundusfetal lung named FLuDero. Then we molecularly characterized some of the Toll-like receptors (TLR3, 7, 8 and 9), the three RIG-I-like receptor members, as well as IFNα1 and IFNβ. Challenging the FLuDero cell line with poly (I:C) resulted in an up-regulation of both IFNα1 and IFNβ and the induction of expression of the different pattern recognition receptors characterized. These findings provide evidence of the intact dsRNA recognition machinery and the IFN-I signaling pathway in our cellular model. Herein, we generated a sum of insightful specific molecular and cellular tools that will serve as a useful model to study virus–host interactions of the common vampire bat.Highlights?An immortalized clonal cell line fromDesmodus rotunduswas established.?TLRs, R
机译:<![CDATA [ 抽象 虽然普通的吸血鬼蝙蝠, desmodus rotundus ,被称为拉丁美洲的主要狂犬病病毒水库,没有任何工具可以调查其抗病毒天生的免疫系统。为了表征IFN-I途径,我们建立了来自A D.?Rotundus 胎儿肺命名的细胞系。然后,我们分子表征了一些可收费的受体(TLR3,7,8和9),三个钻石-i样受体构件,以及IFNα1和IFNβ。利用聚(I:C)挑战Fludero细胞系导致IFNα1和IFNβ的上调,并表现出不同的模式识别受体的表达。这些发现提供了在我们的蜂窝模型中完整的DSRNA识别机械和IFN-I信号通路的证据。在此,我们产生了富有洞察力的特异性分子和细胞工具的总和,其将作为研究普通吸血鬼蝙蝠的病毒宿主相互作用的有用模型。 亮点 来自 desmodus rotundus 的永生克隆细胞系列。< / ce:para> tlrs,r

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