Uma M, Hegde S R, Rao P P, Nagalekshmi K, Gauthami S, Kumar D, Hegde N R
Acta Virol. 2018;62(1):68-77. doi: 10.4149/av_2018_108.
Poliovirus (PV) contains a single-stranded positive-sense RNA genome, which is translated into a single polyprotein. Viral proteases process this polyprotein to produce several individual as well as fused proteins. The major viral protease 3C cleaves at nine of the eleven cleavage sites. During the process of expressing PV 3ABC protein in Escherichia coli, we identified a 3C mutant (L70P), which lost its protease activity. This loss of function was confirmed by generating recombinant adenoviruses expressing mutant and wild-type 3C. Further, infectious PV could not be recovered from PV full-length cDNA containing the L70P mutation. However, 3C L70P mutant cDNA could complement a PV cDNA containing a 1AB deletion, producing a viable virus population containing defective complementing genomes. Structural analysis of the mutant protein indicated that the L70P mutation resulted in the loss of a hydrogen bond between two residues located within a loop between two β-sheets, potentially leading to strain on the catalytic site. We conclude that L70P inactivates 3C protease because of its close proximity to the 3C catalytic site.
脊髓灰质炎病毒(PV)含有一条单链正义RNA基因组,该基因组被翻译为一个单一的多聚蛋白。病毒蛋白酶对这个多聚蛋白进行加工,以产生几种单独的以及融合的蛋白质。主要的病毒蛋白酶3C在11个切割位点中的9个位点进行切割。在大肠杆菌中表达PV 3ABC蛋白的过程中,我们鉴定出一个3C突变体(L70P),它失去了蛋白酶活性。通过产生表达突变型和野生型3C的重组腺病毒,证实了这种功能丧失。此外,无法从含有L70P突变的PV全长cDNA中回收感染性PV。然而,3C L70P突变体cDNA可以互补含有1AB缺失的PV cDNA,产生含有缺陷互补基因组的有活力的病毒群体。对突变蛋白的结构分析表明,L70P突变导致位于两个β折叠之间的环内的两个残基之间的氢键丢失,这可能导致催化位点上的张力。我们得出结论,L70P使3C蛋白酶失活是因为它紧邻3C催化位点。