State Key Laboratory of Agrobiotechnology, Beijing 100193, China.
Ministry of Agriculture Key Laboratory of Soil Microbiology, Beijing 100193, China.
Sci Rep. 2016 Jun 22;6:28497. doi: 10.1038/srep28497.
Porcine reproductive and respiratory syndrome virus (PRRSV) is one of the most significant etiological agents in the swine industry worldwide. It has been reported that PRRSV infection can modulate host immune responses, and innate immune evasion is thought to play a vital role in PRRSV pathogenesis. In this study, we demonstrated that highly pathogenic PRRSV (HP-PRRSV) infection specifically down-regulated virus-induced signaling adaptor (VISA), a unique adaptor molecule that is essential for retinoic acid induced gene-I (RIG-I) and melanoma differentiation associated gene 5 (MDA5) signal transduction. Moreover, we verified that nsp4 inhibited IRF3 activation induced by signaling molecules, including RIG-I, MDA5, VISA, and TBK1, but not IRF3. Subsequently, we demonstrated that HP-PRRSV nsp4 down-regulated VISA and suppressed type I IFN induction. Importantly, VISA was cleaved by nsp4 and released from mitochondrial membrane, which interrupted the downstream signaling of VISA. However, catalytically inactive mutant of nsp4 abolished its ability to cleave VISA. Interestingly, nsp4 of typical PRRSV strain CH-1a had no effect on VISA. Taken together, these findings reveal a strategy evolved by HP-PRRSV to counteract anti-viral innate immune signaling, which complements the known PRRSV-mediated immune-evasion mechanisms.
猪繁殖与呼吸综合征病毒(PRRSV)是全球养猪业最重要的病原之一。有报道称,PRRSV 感染可调节宿主免疫反应,而先天免疫逃避被认为在 PRRSV 发病机制中起关键作用。在本研究中,我们证实了高致病性 PRRSV(HP-PRRSV)感染可特异性地下调病毒诱导的信号转导适配器(VISA),VISA 是一种独特的衔接分子,对于视黄酸诱导基因-I(RIG-I)和黑色素瘤分化相关基因 5(MDA5)信号转导至关重要。此外,我们验证了 nsp4 抑制了包括 RIG-I、MDA5、VISA 和 TBK1 在内的信号分子诱导的 IRF3 激活,但不抑制 IRF3。随后,我们证实 HP-PRRSV nsp4 下调了 VISA 并抑制了 I 型 IFN 的诱导。重要的是,VISA 被 nsp4 切割并从线粒体膜释放,从而中断了 VISA 的下游信号。然而,nsp4 的无酶活性突变体使其失去了切割 VISA 的能力。有趣的是,典型 PRRSV 株 CH-1a 的 nsp4 对 VISA 没有影响。总之,这些发现揭示了 HP-PRRSV 对抗抗病毒先天免疫信号的进化策略,补充了已知的 PRRSV 介导的免疫逃避机制。