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尼帕病毒和亨德拉病毒核蛋白通过干扰信号转导和转录激活因子1(STAT1)和STAT2的复合物形成来抑制它们的核积累。

Nipah and Hendra Virus Nucleoproteins Inhibit Nuclear Accumulation of Signal Transducer and Activator of Transcription 1 (STAT1) and STAT2 by Interfering with Their Complex Formation.

作者信息

Sugai Akihiro, Sato Hiroki, Takayama Ikuyo, Yoneda Misako, Kai Chieko

机构信息

Laboratory Animal Research Center, The Institute of Medical Science, The University of Tokyo, Tokyo, Japan.

Laboratory Animal Research Center, The Institute of Medical Science, The University of Tokyo, Tokyo, Japan

出版信息

J Virol. 2017 Oct 13;91(21). doi: 10.1128/JVI.01136-17. Print 2017 Nov 1.

Abstract

Henipaviruses, such as Nipah (NiV) and Hendra (HeV) viruses, are highly pathogenic zoonotic agents within the family. The phosphoprotein (P) gene products of the paramyxoviruses have been well characterized for their interferon (IFN) antagonist activity and their contribution to viral pathogenicity. In this study, we demonstrated that the nucleoprotein (N) of henipaviruses also prevents the host IFN signaling response. Reporter assays demonstrated that the NiV and HeV N proteins (NiV-N and HeV-N, respectively) dose-dependently suppressed both type I and type II IFN responses and that the inhibitory effect was mediated by their core domains. Additionally, NiV-N prevented the nuclear transport of signal transducer and activator of transcription 1 (STAT1) and STAT2. However, NiV-N did not associate with Impα5, Impβ1, or Ran, which are members of the nuclear transport system for STATs. Although P protein is known as a binding partner of N protein and actively retains N protein in the cytoplasm, the IFN antagonist activity of N protein was not abolished by the coexpression of P protein. This suggests that the IFN inhibition by N protein occurs in the cytoplasm. Furthermore, we demonstrated that the complex formation of STATs was hampered in the N protein-expressing cells. As a result, STAT nuclear accumulation was reduced, causing a subsequent downregulation of interferon-stimulated genes (ISGs) due to low promoter occupancy by STAT complexes. This novel route for preventing host IFN responses by henipavirus N proteins provides new insight into the pathogenesis of these viruses. Paramyxoviruses are well known for suppressing interferon (IFN)-mediated innate immunity with their phosphoprotein (P) gene products, and the henipaviruses also possess P, V, W, and C proteins for evading host antiviral responses. There are numerous studies providing evidence for the relationship between viral pathogenicity and antagonistic activities against IFN responses by P gene products. Meanwhile, little attention has been paid to the influence of nucleoprotein (N) on host innate immune responses. In this study, we demonstrated that both the NiV and HeV N proteins have antagonistic activity against the JAK/STAT signaling pathway by preventing the nucleocytoplasmic trafficking of STAT1 and STAT2. This inhibitory effect is due to an impairment of the ability of STATs to form complexes. These results provide new insight into the involvement of N protein in viral pathogenicity via its IFN antagonism.

摘要

亨尼帕病毒,如尼帕病毒(NiV)和亨德拉病毒(HeV),是该病毒科内具有高度致病性的人畜共患病原体。副粘病毒的磷蛋白(P)基因产物因其干扰素(IFN)拮抗活性及其对病毒致病性的作用而得到了充分的表征。在本研究中,我们证明了亨尼帕病毒的核蛋白(N)也能阻止宿主的IFN信号反应。报告基因检测表明,NiV和HeV的N蛋白(分别为NiV-N和HeV-N)以剂量依赖的方式抑制I型和II型IFN反应,且这种抑制作用是由它们的核心结构域介导的。此外,NiV-N阻止了信号转导和转录激活因子1(STAT1)和STAT2的核转运。然而,NiV-N并不与STATs核转运系统的成员Impα5、Impβ1或Ran相互作用。虽然P蛋白是已知的N蛋白结合伴侣,并能将N蛋白主动保留在细胞质中,但N蛋白的IFN拮抗活性并不会因P蛋白的共表达而被消除。这表明N蛋白对IFN的抑制作用发生在细胞质中。此外,我们证明了在表达N蛋白的细胞中,STATs的复合物形成受到阻碍。结果,STAT的核积累减少,由于STAT复合物对启动子的占据率低,导致干扰素刺激基因(ISG)随后下调。亨尼帕病毒N蛋白阻止宿主IFN反应的这一新途径为这些病毒的发病机制提供了新的见解。副粘病毒以其磷蛋白(P)基因产物抑制干扰素(IFN)介导的固有免疫而闻名,亨尼帕病毒也拥有P、V、W和C蛋白来逃避宿主的抗病毒反应。有许多研究为病毒致病性与P基因产物对IFN反应的拮抗活性之间的关系提供了证据。与此同时,核蛋白(N)对宿主固有免疫反应的影响却很少受到关注。在本研究中,我们证明了NiV和HeV N蛋白都通过阻止STAT1和STAT2的核质运输而对JAK/STAT信号通路具有拮抗活性。这种抑制作用是由于STATs形成复合物的能力受损。这些结果为N蛋白通过其IFN拮抗作用参与病毒致病性提供了新的见解。

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