Nishio Machiko, Tsurudome Masato, Ito Morihiro, Ito Yasuhiko
Department of Microbiology, Mie University School of Medicine, 2-174, Edobashi, Tsu-shi, Mie Prefecture, 514-8507 Japan.
J Virol. 2005 Dec;79(23):14756-68. doi: 10.1128/JVI.79.23.14756-14768.2005.
The V proteins of some paramyxoviruses have developed the ability to efficiently inactivate STAT protein function as a countermeasure for evading interferon (IFN) responses. Human parainfluenza virus type 4 (hPIV4) is one of the rubulaviruses, which are members of the family Paramyxoviridae, and has a V protein with a highly conserved cysteine-rich domain that is the hallmark of paramyxovirus V proteins. In order to study the function of the hPIV4 V protein, we established HeLa cells expressing the hPIV4A V protein (HeLa/FlagPIV4V). The hPIV4 V protein had no ability to reduce the level of STAT1 or STAT2, although it associated with STAT1, STAT2, DDB1, and Cul4A. It interfered with neither STAT1 and STAT2 tyrosine phosphorylation nor IFN-induced STAT nuclear accumulation. In addition, HeLa/FlagPIV4V cells are fully sensitive to both beta interferon (IFN-beta) and IFN-gamma, indicating that the hPIV4 V protein has no ability to block IFN-induced signaling. We further established HeLa cells expressing various chimeric proteins between the hPIV2 and hPIV4A V proteins. The lack of IFN-antagonistic activity of the hPIV4 V protein is caused by both the P/V common and V-specific domains. At least two regions (amino acids [aa] 32 to 45 and aa 143 to 164) of hPIV4 V in the P/V common domain and one region (aa 200 to 212) of the C terminus are involved in the inability to evade the IFN-induced signaling. Moreover, we established HeLa cells persistently infected with hPIV4 to make sure of the inability to escape IFN and confirmed that hPIV4 is the only paramyxovirus analyzed to date that can't evade the IFN-induced antiviral responses.
一些副粘病毒的V蛋白已具备有效灭活STAT蛋白功能的能力,以此作为逃避干扰素(IFN)应答的一种应对措施。人副流感病毒4型(hPIV4)是副粘病毒科成员弹状病毒之一,其V蛋白具有高度保守的富含半胱氨酸结构域,这是副粘病毒V蛋白的标志。为了研究hPIV4 V蛋白的功能,我们构建了表达hPIV4A V蛋白的HeLa细胞(HeLa/FlagPIV4V)。hPIV4 V蛋白虽与STAT1、STAT2、DDB1和Cul4A相关联,但并无降低STAT1或STAT2水平的能力。它既不干扰STAT1和STAT2的酪氨酸磷酸化,也不影响IFN诱导的STAT核内积累。此外,HeLa/FlagPIV4V细胞对β干扰素(IFN-β)和γ干扰素均完全敏感,这表明hPIV4 V蛋白没有阻断IFN诱导信号传导的能力。我们进一步构建了表达hPIV2和hPIV4A V蛋白之间各种嵌合蛋白的HeLa细胞。hPIV4 V蛋白缺乏IFN拮抗活性是由P/V共同结构域和V特异性结构域共同导致的。hPIV4 V在P/V共同结构域中至少有两个区域(氨基酸[aa]32至45和aa 143至164)以及C末端的一个区域(aa 200至212)参与了无法逃避IFN诱导信号传导的过程。此外,我们构建了持续感染hPIV4的HeLa细胞,以确定其无法逃避IFN,并证实hPIV4是迄今为止分析的唯一一种无法逃避IFN诱导抗病毒应答的副粘病毒。