Li Lan, Zheng Qisheng, Zhang Yuanpeng, Li Pengcheng, Fu Yanfeng, Hou Jibo, Xiao Xilong
College of Veterinary Medicine, China Agricultural University, Beijing, 100193, People's Republic of China.
National Research Center of Engineering and Technology for Veterinary Biologicals, Jiangsu Academy of Agricultural Sciences, Nanjing, 210014, Jiangsu, People's Republic of China.
Arch Virol. 2016 Jul;161(7):1883-90. doi: 10.1007/s00705-016-2838-3. Epub 2016 Apr 21.
Porcine reproductive and respiratory syndrome virus (PRRSV) has caused significant economic losses in the swine industry worldwide. However, there is not an ideal vaccine to provide complete protection against PRRSV. Thus, the need for new antiviral strategies to control PRRSV still remains. Surfactant protein A (SP-A) belongs to the family of C-type lectins, which can exert antiviral activities. In this present study, we assessed the antiviral properties of recombinant porcine SP-A (RpSP-A) on PRRSV infection in Marc 145 cells and revealed its antiviral mechanism using a plaque assay, real-time qPCR, western blotting analysis and an attachment and penetration assay. Our results showed that RpSP-A could inhibit the infectivity of PRRSV in Marc 145 cells and could reduce the total RNA and protein level. The attachment assay indicated that RpSP-A in the presence of Ca(2+) could largely inhibit Marc 145 cell attachment; however, in the penetration assay, it was relatively inactive. Furthermore, our study suggested that virus progeny released from infected Marc145 cells were blocked by RpSP-A from infecting other cells. We conclude that RpSP-A has antiviral activity against PRRSV, most probably by blocking viral attachment and the cell-to-cell transmission pathway, and therefore, RpSP-A holds promise as a novel antiviral agent against PRRSV.
猪繁殖与呼吸综合征病毒(PRRSV)已在全球养猪业中造成重大经济损失。然而,目前尚无理想的疫苗能提供针对PRRSV的完全保护。因此,控制PRRSV的新抗病毒策略仍有需求。表面活性蛋白A(SP-A)属于C型凝集素家族,具有抗病毒活性。在本研究中,我们评估了重组猪SP-A(RpSP-A)对Marc 145细胞中PRRSV感染的抗病毒特性,并通过蚀斑试验、实时定量PCR、蛋白质印迹分析以及吸附与穿透试验揭示了其抗病毒机制。我们的结果表明,RpSP-A可抑制PRRSV在Marc 145细胞中的感染性,并能降低总RNA和蛋白质水平。吸附试验表明,在Ca(2+)存在的情况下,RpSP-A可在很大程度上抑制Marc 145细胞的吸附;然而,在穿透试验中,它相对无活性。此外,我们的研究表明,RpSP-A可阻止从受感染的Marc145细胞释放的病毒子代感染其他细胞。我们得出结论,RpSP-A对PRRSV具有抗病毒活性,很可能是通过阻断病毒吸附和细胞间传播途径实现的,因此,RpSP-A有望成为一种新型的抗PRRSV抗病毒剂。