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Proteolytic Products of the Porcine Reproductive and Respiratory Syndrome Virus nsp2 Replicase Protein

机译:猪繁殖与呼吸综合征病毒nsp2复制酶蛋白的蛋白水解产物

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摘要

The nsp2 replicase protein of porcine reproductive and respiratory syndrome virus (PRRSV) was recently demonstrated to be processed from its precursor by the PL2 protease at or near the G1196|G1197 dipeptide in transfected CHO cells. Here the proteolytic cleavage of PRRSV nsp2 was further investigated in virally infected MARC-145 cells by using two recombinant PRRSVs expressing epitope-tagged nsp2. The data revealed that PRRSV nsp2 exists as different isoforms, termed nsp2a, nsp2b, nsp2c, nsp2d, nsp2e, and nsp2f, during PRRSV infection. Moreover, on the basis of deletion mutagenesis and antibody probing, these nsp2 species appeared to share the same N terminus but to differ in their C termini. The largest protein, nsp2a, corresponded to the nsp2 product identified in transfected CHO cells. nsp2b and nsp2c were processed within or near the transmembrane (TM) region, presumably at or near the conserved sites G981|G982 and G828|G829|G830, respectively. The C termini for nsp2d, -e, and -f were mapped within the nsp2 middle hypervariable region, but no conserved cleavage sites could be definitively predicted. The larger nsp2 species emerged almost simultaneously in the early stage of PRRSV infection. Pulse-chase analysis revealed that all six nsp2 species were relatively stable and had low turnover rates. Deletion mutagenesis revealed that the smaller nsp2 species (e.g., nsp2d, nsp2e, and nsp2f) were not essential for viral replication in cell culture. Lastly, we identified a cellular chaperone, named heat shock 70-kDa protein 5 (HSPA5), that was strongly associated with nsp2, which may have important implications for PRRSV replication. Overall, these findings indicate that PRRSV nsp2 is increasingly emerging as a multifunctional protein and may have a profound impact on PRRSV replication and viral pathogenesis.
机译:猪繁殖与呼吸综合征病毒(PRRSV)的nsp2复制酶蛋白最近被证明是由PL upup> 1196 | G 1197 或附近的PL2蛋白酶加工而成。转染的CHO细胞中的二肽。在这里,通过使用两种表达表位标记的nsp2的重组PRRSV,在病毒感染的MARC-145细胞中进一步研究了PRRSV nsp2的蛋白水解切割。数据显示PRRSV感染期间PRRSV nsp2以不同的同工型存在,分别称为nsp2a,nsp2b,nsp2c,nsp2d,nsp2e和nsp2f。此外,基于缺失诱变和抗体探测,这些nsp2物种似乎共享相同的N末端,但其C末端有所不同。最大的蛋白质nsp2a对应于转染的CHO细胞中鉴定出的nsp2产物。 nsp2b和nsp2c在跨膜(TM)区域内或附近处理,大概在保守位点G 981 | G 982 和G 828 | G 829 | G 830 。 nsp2d,-e和-f的C末端位于nsp2中间高变区内,但无法确定地预测保守的切割位点。在PRRSV感染的早期阶段,几乎同时出现了较大的nsp2物种。脉冲追踪分析表明,所有六个nsp2物种都相对稳定且周转率较低。缺失诱变显示较小的nsp2种类(例如nsp2d,nsp2e和nsp2f)对于细胞培养中的病毒复制不是必需的。最后,我们确定了一种名为热休克70 kDa蛋白5(HSPA5)的细胞伴侣,它与nsp2密切相关,这可能对PRRSV复制具有重要意义。总体而言,这些发现表明PRRSV nsp2越来越多地作为一种多功能蛋白出现,并且可能对PRRSV复制和病毒发病机理产生深远影响。

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