School of Life Sciences, Tianjin University, Tianjin, China.
Tianjin Key Laboratory of Function and Application of Biological Macromolecular Structures, Tianjin University, Tianjin, China.
Front Immunol. 2021 May 17;12:664417. doi: 10.3389/fimmu.2021.664417. eCollection 2021.
As transcriptional co-activator of AP-1/Jun, estrogen receptors and NF-κB, nuclear protein RBM39 also involves precursor mRNA (pre-mRNA) splicing. Porcine reproductive and respiratory syndrome virus (PRRSV) causes sow reproductive disorders and piglet respiratory diseases, which resulted in serious economic losses worldwide. In this study, the up-regulated expression of RBM39 and down-regulated of inflammatory cytokines (IFN-β, TNFα, NF-κB, IL-1β, IL-6) were determined in PRRSV-infected 3D4/21 cells, and accompanied with the PRRSV proliferation. The roles of RBM39 altering phosphorylation of c-Jun to inhibit the AP-1 pathway to promote PRRSV proliferation were further verified. In addition, the nucleocytoplasmic translocation of RBM39 and c-Jun from the nucleus to cytoplasm was enhanced in PRRSV-infected cells. The three RRM domain of RBM39 are crucial to support the proliferation of PRRSV. Several PRRSV RNA (nsp4, nsp5, nsp7, nsp10-12, M and N) binding with RBM39 were determined, which may also contribute to the PRRSV proliferation. Our results revealed a complex mechanism of RBM39 by altering c-Jun phosphorylation and nucleocytoplasmic translocation, and regulating binding of RBM39 with viral RNA to prompt PRRSV proliferation. The results provide new viewpoints to understand the immune escape mechanism of PRRSV infection.
作为转录共激活因子的 AP-1/Jun、雌激素受体和 NF-κB,核蛋白 RBM39 还涉及前体 mRNA(pre-mRNA)剪接。猪繁殖与呼吸综合征病毒(PRRSV)引起母猪繁殖障碍和仔猪呼吸道疾病,在全球范围内造成了严重的经济损失。在这项研究中,确定了 RBM39 的上调表达和炎症细胞因子(IFN-β、TNFα、NF-κB、IL-1β、IL-6)的下调在 PRRSV 感染的 3D4/21 细胞中,伴随着 PRRSV 的增殖。进一步验证了 RBM39 通过改变 c-Jun 的磷酸化来抑制 AP-1 途径促进 PRRSV 增殖的作用。此外,在 PRRSV 感染的细胞中,RBM39 和 c-Jun 从核内到细胞质的核质易位增强。RBM39 的三个 RRM 结构域对于支持 PRRSV 的增殖至关重要。确定了几个 PRRSV RNA(nsp4、nsp5、nsp7、nsp10-12、M 和 N)与 RBM39 结合,这也可能有助于 PRRSV 的增殖。我们的研究结果揭示了 RBM39 通过改变 c-Jun 磷酸化和核质易位,并调节 RBM39 与病毒 RNA 的结合来促进 PRRSV 增殖的复杂机制。这些结果为理解 PRRSV 感染的免疫逃避机制提供了新的观点。