Institute of Virology, Faculty of Veterinary Medicine, Frankfurter Strasse 107, Justus-Liebig-Universität Giessen, D-35392 Giessen, Germany.
J Virol. 2011 Apr;85(7):3607-20. doi: 10.1128/JVI.02206-10. Epub 2011 Jan 26.
Proteolytic processing of polyproteins is considered a crucial step in the life cycle of most positive-strand RNA viruses. An enhancement of NS2-3 processing has been described as a major difference between the noncytopathogenic (non-CP) and the cytopathogenic (CP) biotypes of pestiviruses. The effects of accelerated versus delayed NS2-3 processing on the maturation of the other nonstructural proteins (NSP) have never been compared. In this study, we analyzed the proteolytic processing of NSP in Classical swine fever virus (CSFV). Key to the investigation was a panel of newly developed monoclonal antibodies (MAbs) that facilitated monitoring of all nonstructural proteins involved in virus replication (NS2, NS3, NS4A, NS5A, and NS5B). Applying these MAbs in Western blotting and radioimmunoprecipitation allowed an unambiguous identification of the mature proteins and precursors in non-CP CSFV-infected cells. Furthermore, the kinetics of processing were determined by pulse-chase analyses for non-CP CSFV, CP CSFV, and a CP CSFV replicon. A slow but constant processing of NS4A/B-5A/B occurred in non-CP CSFV-infected cells, leading to balanced low-level concentrations of mature NSP. In contrast, the turnover of the polyprotein precursors was three times faster in CP CSFV-infected cells and in cells transfected with a CP CSFV replicon, causing a substantial increase of mature NSP concentrations. We conclude that a delayed processing not only of NS3 but further of all NSP represents a hallmark of regulation in non-CP pestiviruses.
蛋白水解加工被认为是大多数正链 RNA 病毒生命周期中的关键步骤。非致细胞病变(非 CP)和致细胞病变(CP)两种生物型的瘟病毒之间的一个主要区别是 NS2-3 加工的增强。加速与延迟 NS2-3 加工对其他非结构蛋白(NSP)成熟的影响从未被比较过。在这项研究中,我们分析了经典猪瘟病毒(CSFV)的 NSP 蛋白水解加工。研究的关键是一组新开发的单克隆抗体(MAb),这些 MAb 有助于监测参与病毒复制的所有非结构蛋白(NS2、NS3、NS4A、NS5A 和 NS5B)。在 Western blot 和放射免疫沉淀中应用这些 MAb,可以明确识别非 CP CSFV 感染细胞中的成熟蛋白和前体。此外,通过对非 CP CSFV、CP CSFV 和 CP CSFV 复制子进行脉冲追踪分析,确定了加工的动力学。非 CP CSFV 感染细胞中 NS4A/B-5A/B 的加工缓慢但持续,导致成熟 NSP 的浓度保持低水平平衡。相比之下,CP CSFV 感染细胞和转染 CP CSFV 复制子的细胞中多蛋白前体的周转率快了三倍,导致成熟 NSP 浓度显著增加。我们得出结论,NS3 的加工延迟以及所有 NSP 的加工延迟是非 CP 瘟病毒调控的标志。