Yousef Nasser N, Parks Griffith D
Burnett School of Biomedical Sciences, College of Medicine, University of Central Florida, Orlando, FL 32827, USA.
Pathogens. 2025 Aug 17;14(8):815. doi: 10.3390/pathogens14080815.
Persistent RNA virus infections (PI) are often characterized by extended viral shedding and maintained cycles of inflammation. The innate immune Complement (C') pathways can recognize acute infected (AI) cells and result in their lysis, but the relative sensitivity of PI cells to C'-directed killing is incompletely understood. Here, we extended our previous studies on the interactions of C' with parainfluenza virus AI and PI A549 cells to two additional respiratory tract cell lines. AI Hep2 and H1975 cells infected with Parainfluenza virus 5 (PIV5) were found to be highly sensitive to C' lysis. By contrast, PIV5 PI cells were highly resistant to killing by C″. Surface deposition of membrane attack complex (MAC) and C3 was also greatly reduced on the surface of PI cells compared to AI cells. PI cells had lower levels of surface viral glycoprotein expression compared to AI cells. Treatment of AI cells with ribavirin (RBV) showed a dose-dependent decrease in both viral glycoprotein expression and sensitivity to C'-mediated lysis. When surface viral glycoprotein levels were reduced in AI cells to those in PI cells, AI cells became similarly resistant to C'. While sialic acid levels on PI cell surfaces matched that of naïve cells, enzymatic removal of this sialic acid did not increase sensitivity to C'-mediated lysis. Despite their varying profiles of C' activation and deposition, these studies indicate downregulation of viral gene expression as a common mechanism of C' resistance across various parainfluenza virus PI cell lines.
持续性RNA病毒感染(PI)通常表现为病毒长期排出以及炎症持续循环。先天性免疫补体(C')途径可识别急性感染(AI)细胞并导致其裂解,但PI细胞对C'介导杀伤的相对敏感性尚不完全清楚。在此,我们将之前关于C'与副流感病毒AI和PI A549细胞相互作用的研究扩展到另外两种呼吸道细胞系。发现感染副流感病毒5(PIV5)的AI Hep2和H1975细胞对C'裂解高度敏感。相比之下,PIV5 PI细胞对C'杀伤具有高度抗性。与AI细胞相比,PI细胞表面膜攻击复合物(MAC)和C3的沉积也大大减少。与AI细胞相比,PI细胞表面病毒糖蛋白表达水平较低。用利巴韦林(RBV)处理AI细胞显示病毒糖蛋白表达和对C'介导裂解的敏感性呈剂量依赖性降低。当AI细胞表面病毒糖蛋白水平降低到与PI细胞相当时,AI细胞对C'的抗性也变得相似。虽然PI细胞表面的唾液酸水平与未感染细胞相当,但通过酶法去除这种唾液酸并不会增加对C'介导裂解的敏感性。尽管它们的C'激活和沉积情况各不相同,但这些研究表明病毒基因表达下调是各种副流感病毒PI细胞系中C'抗性的共同机制。