Yu Hei, Kailing Kuang, Xiangge Meng, Qiuju Su, Jiao Yuan, Yang Shen, Bang Liu, Xiang Zhou
Porcine reproductive and respiratory syndrome virus (PRRSV) causes mitochondrial dysfunction and induces mitophagy to facilitate virus replication. The regulator of calcineurin 1 (RCAN1) is a biomarker of oxidative stress caused by mitochondrial dysfunction. However, whether RCAN1 is involved in PRRSV pathogenesis remains unclear. In this study, we reveal that the glycoprotein 5 (GP5) of PRRSV induced the porcine RCAN1-1L isoform through oxidative stress. Overexpression of RCAN1-1L was found to significantly promote PRRSV proliferation in PK15CD163 cells. Transcriptome analysis of PRRSV-infected PK15CD163 cells transfected with siRNA targeting RCAN1-1L identified 62 differentially expressed genes, most of which were associated with mitochondrial functions. Furthermore, RCAN1-1L downregulated the expression of the mitochondrial outer membrane protein TOM20 while upregulating the mitophagy-associated proteins PINK1 and the autophagosome marker LC3II. The accumulation of lysosomes acidified mitochondria and enhanced mitophagic flux were observed following the overexpression of RCAN1-1L during PRRSV infection. In addition, RCAN1-1L decreases intracellular ROS levels and downregulates the expression of the apoptotic marker cleaved Caspase-3 in PRRSV infected cells. The findings demonstrate that RCAN1-1L links mitophagy to PRRSV pathogenesis and serves as a potential antiviral therapeutic target.