College of Veterinary Medicine, Northwest A&F University, Yangling, Shaanxi, China.
State Key Laboratory of Veterinary Etiological Biology, Lanzhou Veterinary Research Institute, Chinese Academy of Agricultural Sciences, Lanzhou, Gansu, China.
J Virol. 2022 Feb 9;96(3):e0186321. doi: 10.1128/JVI.01863-21. Epub 2021 Dec 1.
Type I interferons (IFN-Is) play a key role in host defense against virus infection, but porcine reproductive and respiratory syndrome virus (PRRSV) infection does not effectively activate IFN-I response, and the underlying molecular mechanisms are poorly characterized. In this study, a novel transcription factor of the heme oxygenase-1 (HO-1) gene, homeobox A3 (HOXA3), was screened and identified. Here, we found that HOXA3 was significantly increased during PRRSV infection. We demonstrated that HOXA3 promotes PRRSV replication by negatively regulating the HO-1 gene transcription, which is achieved by regulating IFN-I production. A detailed analysis showed that PRRSV exploits HOXA3 to suppress beta interferon (IFN-β) and IFN-stimulated gene (ISG) expression in host cells. We also provide direct evidence that the activation of IFN-I by HO-1 depends on its interaction with IRF3. Then we further proved that a deficiency of HOXA3 promoted the HO-1-IRF3 interaction and subsequently enhanced IRF3 phosphorylation and nuclear translocation in PRRSV-infected cells. These data suggest that PRRSV uses HOXA3 to negatively regulate the transcription of the HO-1 gene to suppress the IFN-I response for immune evasion. Porcine reproductive and respiratory syndrome (PRRS), caused by PRRSV, causes significant worldwide economic losses in the pork industry. HOXA3 is generally considered to be an important molecule in the process of body development and cell differentiation. Here, we found that a novel transcription factor of the HO-1 gene, HOXA3, can negatively regulate the transcription of the HO-1 gene and play an important role in the suppression of IFN-I response by PRRSV. PRRSV induces the upregulation of HOXA3, which can negatively regulate HO-1 gene transcription, thereby weakening the interaction between HO-1 and IRF3 for inhibiting the type I IFN response. This study extends the function of HOXA3 and provides new insights into the PRRSV immune evasion mechanism.
I 型干扰素(IFN-Is)在宿主防御病毒感染中发挥关键作用,但猪繁殖与呼吸综合征病毒(PRRSV)感染不能有效地激活 IFN-I 反应,其潜在的分子机制尚不清楚。在本研究中,筛选并鉴定了血红素加氧酶-1(HO-1)基因的新型转录因子——同源盒 A3(HOXA3)。结果发现,PRRSV 感染过程中 HOXA3 显著增加。研究表明,HOXA3 通过负调控 HO-1 基因转录来促进 PRRSV 复制,这是通过调节 IFN-I 产生来实现的。详细分析表明,PRRSV 利用 HOXA3 抑制宿主细胞中β干扰素(IFN-β)和干扰素刺激基因(ISG)的表达。我们还提供了直接证据表明,HO-1 通过与 IRF3 相互作用激活 IFN-I。然后我们进一步证明,HOXA3 缺乏促进了 HO-1-IRF3 相互作用,随后增强了 PRRSV 感染细胞中 IRF3 的磷酸化和核转位。这些数据表明,PRRSV 利用 HOXA3 负调控 HO-1 基因的转录,抑制 IFN-I 反应以逃避免疫。猪繁殖与呼吸综合征(PRRS)由 PRRSV 引起,给全球猪肉产业造成了重大经济损失。HOXA3 通常被认为是机体发育和细胞分化过程中的重要分子。在这里,我们发现 HO-1 基因的一种新型转录因子 HOXA3 可以负调控 HO-1 基因的转录,并在 PRRSV 抑制 IFN-I 反应中发挥重要作用。PRRSV 诱导 HOXA3 的上调,从而负调控 HO-1 基因转录,减弱 HO-1 与 IRF3 的相互作用,抑制 I 型 IFN 反应。本研究扩展了 HOXA3 的功能,并为 PRRSV 免疫逃避机制提供了新的见解。