Beattie E, Denzler K L, Tartaglia J, Perkus M E, Paoletti E, Jacobs B L
Virogenetics Corporation, Troy, New York 12180.
J Virol. 1995 Jan;69(1):499-505. doi: 10.1128/JVI.69.1.499-505.1995.
The vaccinia virus (VV) E3L gene, which encodes a potent inhibitor of the interferon (IFN)-induced, double-stranded RNA (dsRNA)-dependent protein kinase, PKR, is thought to be involved in the IFN-resistant phenotype of VV. The E3L gene products, p25 and p20, act as inhibitors of PKR, presumably by binding and sequestering activator dsRNA from the kinase. In this study we demonstrate that VV with the E3L gene specifically deleted (vP1080) was sensitive to the antiviral effects of IFN and debilitated in its ability to rescue vesicular stomatitis virus from the antiviral effects of IFN. Infection of L929 cells with E3L-minus virus led to rRNA degradation typical of activation of the 2'-5'-oligoadenylate synthetase/RNase L system, and extracts of infected cells lacked the PKR-inhibitory activity characteristic of wild-type VV. The reovirus S4 gene, which encodes a dsRNA-binding protein (sigma 3) that can also inhibit PKR activation by binding and sequestering activator dsRNA, was inserted into vP1080. The resultant virus (vP1112) was partially resistant to the antiviral effects of IFN in comparison with vP1080. Further studies demonstrated that transient expression of the reovirus sigma 3 protein rescued E3L-minus VV replication in HeLa cells. In these studies, rescue by sigma 3 mutants correlated with their ability to bind dsRNA. Finally, vP112 was also able to rescue the replication of the IFN-sensitive virus vesicular stomatitis virus in a manner similar to that of wild-type VV. Together, these results suggest that the reovirus S4 gene can replace the VV E3L gene with respect to interference with the IFN-induced antiviral activity.
痘苗病毒(VV)的E3L基因编码一种有效的干扰素(IFN)诱导的双链RNA(dsRNA)依赖性蛋白激酶PKR的抑制剂,被认为与VV的IFN抗性表型有关。E3L基因产物p25和p20作为PKR的抑制剂,可能是通过结合并隔离来自激酶的激活剂dsRNA。在本研究中,我们证明E3L基因特异性缺失的VV(vP1080)对IFN的抗病毒作用敏感,并且在从IFN的抗病毒作用中拯救水疱性口炎病毒的能力上有所减弱。用缺失E3L的病毒感染L929细胞导致了典型的2'-5'-寡腺苷酸合成酶/RNase L系统激活的rRNA降解,并且感染细胞的提取物缺乏野生型VV特有的PKR抑制活性。呼肠孤病毒的S4基因编码一种dsRNA结合蛋白(sigma 3),该蛋白也可以通过结合并隔离激活剂dsRNA来抑制PKR激活,将其插入到vP1080中。与vP1080相比,所得病毒(vP1112)对IFN的抗病毒作用具有部分抗性。进一步的研究表明,呼肠孤病毒sigma 3蛋白的瞬时表达拯救了HeLa细胞中缺失E3L的VV复制。在这些研究中,sigma 3突变体的拯救作用与其结合dsRNA的能力相关。最后,vP112也能够以类似于野生型VV的方式拯救IFN敏感病毒水疱性口炎病毒的复制。总之,这些结果表明,就干扰IFN诱导的抗病毒活性而言,呼肠孤病毒S4基因可以替代VV的E3L基因。