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强毒犬瘟热病毒V蛋白的两个结构域选择性抑制STAT1和STAT2的核输入。

Two domains of the V protein of virulent canine distemper virus selectively inhibit STAT1 and STAT2 nuclear import.

作者信息

Röthlisberger Anne, Wiener Dominique, Schweizer Matthias, Peterhans Ernst, Zurbriggen Andreas, Plattet Philippe

机构信息

Department of Clinical Research and Veterinary Public Health, Bremgartenstrasse 109a, 3001 Bern, Switzerland.

出版信息

J Virol. 2010 Jul;84(13):6328-43. doi: 10.1128/JVI.01878-09. Epub 2010 Apr 28.

Abstract

Canine distemper virus (CDV) causes in dogs a severe systemic infection, with a high frequency of demyelinating encephalitis. Among the six genes transcribed by CDV, the P gene encodes the polymerase cofactor protein (P) as well as two additional nonstructural proteins, C and V; of these V was shown to act as a virulence factor. We investigated the molecular mechanisms by which the P gene products of the neurovirulent CDV A75/17 strain disrupt type I interferon (IFN-alpha/beta)-induced signaling that results in the establishment of the antiviral state. Using recombinant knockout A75/17 viruses, the V protein was identified as the main antagonist of IFN-alpha/beta-mediated signaling. Importantly, immunofluorescence analysis illustrated that the inhibition of IFN-alpha/beta-mediated signaling correlated with impaired STAT1/STAT2 nuclear import, whereas the phosphorylation state of these proteins was not affected. Coimmunoprecipitation assays identified the N-terminal region of V (VNT) responsible for STAT1 targeting, which correlated with its ability to inhibit the activity of the IFN-alpha/beta-mediated antiviral state. Conversely, while the C-terminal domain of V (VCT) could not function autonomously, when fused to VNT it optimally interacted with STAT2 and subsequently efficiently suppressed the IFN-alpha/beta-mediated signaling pathway. The latter result was further supported by a single mutation at position 110 within the VNT domain of CDV V protein, resulting in a mutant that lost STAT1 binding while retaining a partial STAT2 association. Taken together, our results identified the CDV VNT and VCT as two essential modules that complement each other to interfere with the antiviral state induced by IFN-alpha/beta-mediated signaling. Hence, our experiments reveal a novel mechanism of IFN-alpha/beta evasion among the morbilliviruses.

摘要

犬瘟热病毒(CDV)可在犬类中引发严重的全身性感染,常伴有高频的脱髓鞘性脑炎。在CDV转录的六个基因中,P基因编码聚合酶辅助因子蛋白(P)以及另外两种非结构蛋白C和V;其中V被证明是一种毒力因子。我们研究了神经毒力CDV A75/17株的P基因产物破坏I型干扰素(IFN-α/β)诱导的信号传导从而建立抗病毒状态的分子机制。使用重组敲除A75/17病毒,V蛋白被确定为IFN-α/β介导信号传导的主要拮抗剂。重要的是,免疫荧光分析表明,IFN-α/β介导信号传导的抑制与STAT1/STAT2核输入受损相关,而这些蛋白的磷酸化状态不受影响。免疫共沉淀试验确定了V蛋白的N端区域(VNT)负责靶向STAT1,这与其抑制IFN-α/β介导的抗病毒状态活性的能力相关。相反,虽然V蛋白的C端结构域(VCT)不能自主发挥作用,但与VNT融合时,它能与STAT2最佳地相互作用,随后有效地抑制IFN-α/β介导的信号通路。CDV V蛋白的VNT结构域内第110位的单个突变进一步支持了后一结果,该突变产生的突变体失去了与STAT1的结合,同时保留了部分与STAT2的结合。综上所述,我们的结果确定了CDV的VNT和VCT是两个相互补充的关键模块,可干扰IFN-α/β介导的信号传导所诱导的抗病毒状态。因此,我们的实验揭示了麻疹病毒中一种新的逃避IFN-α/β的机制。

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