NL63冠状病毒木瓜样蛋白酶去泛素化酶活性和对宿主抗病毒天然免疫反应调节作用
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国家自然科学基金(30870536, 30972761), 国家科技重大专项(2008ZX10004-015), 北京市自然科学基金(7092075)和教育部留学回国人员科研启动基金资助项目


Deubiquitinase Activity and Regulation of Antiviral Innate Immune Responses by Papain-like Proteases of Human Coronavirus NL63
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This work was supported by grants from The National Natural Science Foundation of China (30870536, 30972761), National S&T Major Project (2008ZX10004-015), The Beijing Municipal Natural Science Foundation (7092075) and The Scientific Research Foundation for the Returned Overseas Chinese Scholars, State Education Ministry

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    摘要:

    引起人类呼吸道感染的冠状病毒已多达5种.冠状病毒与宿主相互作用决定了其致病性和免疫特性.冠状病毒感染后宿主会立即启动抗病毒天然免疫反应,而人类冠状病毒往往会编码特定蛋白逃逸或抑制宿主的天然免疫反应.NL63冠状病毒是一种新型人类冠状病毒,其非结构蛋白nsp3编码2个木瓜样蛋白酶(PLP)核心结构域PLP1和PLP2.前期研究发现,人类冠状病毒PLP2是一种病毒编码的去泛素化酶(DUB),但是对其DUB特性和功能还不清楚.研究发现,NL63冠状病毒PLP1和PLP2两个核心结构域中只有PLP2具有DUB活性,而且,PLP2的DUB活性对K48和K63连接的多聚泛素化修饰不表现明显特异性.同时,蛋白酶活性催化位点C1678和H1836突变后对其DUB活性有明显抑制作用,而蛋白酶活性催化位点D1849突变后对DUB活性无影响.其次,PLP2而非PLP1核心结构域能够明显抑制仙台病毒和重要信号蛋白(RIG-I、ERIS/STING/MITA)激活的干扰素表达,表明PLP2是一种冠状病毒编码的干扰素拮抗剂,而且PLP2的干扰素拮抗作用不完全依赖其蛋白酶活性.机制研究表明,PLP2能够与干扰素表达通路中的重要调节蛋白RIG-I和ERIS发生相互作用,通过对RIG-I和ERIS的去泛素化负调控宿主抗病毒天然免疫反应.此外,PLP2除利用DUB活性抑制干扰素表达外,很可能存在不依赖自身催化活性的其他组分共同抑制干扰素的产生.以上研究对阐明人类新发冠状病毒免疫和致病机理以及抗病毒药物研发具有重要参考价值.

    Abstract:

    So far there are at least five coronaviruses that are responsible for human respiratory infections. The pathogenesis and immunity of coronavirus are the result of interaction between virus and host. The innate immune response will be started when coronaviruses infect cells. Coronaviruses usually encode multifunctional proteins that are critical for viral replication and blocking the innate immune response to viral infection. Human coronavirus NL63 (HCoV-NL63), a new-emerging human coronavirus for human respiratory infections, has two papain-like protease(PLP) core domains, PLP1 and PLP2, in nonstructural protein nsp3. Besides the proteolytic processing activity towards pp1a(1ab), it was previously demonstrated that PLP2 of HCoV-NL63 has in vitro deubiquitinase (DUB) activity. However, the characteristics and functions of DUB activity of NL63 coronavirus PLPs are poorly understood. It was first demonstrated that the core domain of PLP2, but not PLP1, has in vivo DUB activity, and the DUB activity is not dependent on the catalytic residue of D1849. However, the PLP2 DUB activity is significantly reduced when the catalytic sites of C1678 and H1836 were mutated. PLP2 has both in vivo DUB and DeISGylation activity, and PLP2 exhibits DUB activity toward ubiquitinated branched peptides without any specificity for either Lys48 linkages or Lys63 linkages. Furthermore, PLP2, but not PLP1, is the only core domain responsible for the inhibition of both RIG-I and TLR3-dependent induction of IFNα/β expression. Mechanism study demonstrated that PLP2 interacts with the key regulation players of RIG-I and ERIS (also called STING/MITA) of IFN induction pathway, and induces the deubiquitination of RIG-I and ERIS. Overall, these results definitely demonstrated that for the two core domains of PLP responsible for proteolytically processing of N-terminal part of pp1a(1ab) of NL63 coronavirus, PLP2 is the only core domain of PLPs that responsible for DUB activity and IFN antagonists. The studies are currently underway to determine the biological significance of DUB of NL63 coronavirus PLP2 in virus replication and pathogenesis.

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孙 莉,杨宇东,刘殿波,邢雅玲,陈晓娟,陈忠斌. NL63冠状病毒木瓜样蛋白酶去泛素化酶活性和对宿主抗病毒天然免疫反应调节作用[J].生物化学与生物物理进展,2010,37(8):871-880

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  • 收稿日期:2010-03-13
  • 最后修改日期:2010-04-30
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  • 在线发布日期: 2010-05-12
  • 出版日期: 2010-08-20