Teng H, Piñón J D, Weiss S R
Department of Microbiology, University of Pennsylvania School of Medicine, Philadelphia, Pennsylvania 19104-6076, USA.
J Virol. 1999 Apr;73(4):2658-66. doi: 10.1128/JVI.73.4.2658-2666.1999.
Proteolytic processing of the replicase gene product of mouse hepatitis virus (MHV) is essential for viral replication. In MHV strain A59 (MHV-A59), the replicase gene encodes two predicted papain-like proteinase (PLP) domains, PLP-1 and PLP-2. Previous work using viral polypeptide substrates synthesized by in vitro transcription and translation from the replicase gene demonstrated both cis and trans cleavage activities for PLP-1. We have cloned and overexpressed the PLP-1 domain in Escherichia coli by using a T7 RNA polymerase promoter system or as a maltose-binding protein (MBP) fusion protein. With both overexpression systems, the recombinant PLP-1 exhibited trans cleavage activity when incubated with in vitro-synthesized viral polypeptide substrates. Subsequent characterization of the recombinant PLP-1 revealed that in vitro trans cleavage is more efficient at 22 degrees C than at higher temperatures. Using substrates of increasing lengths, we observed efficient cleavage by PLP-1 requires a substrate greater than 69 kDa. In addition, when PLP-1 was expressed as a polypeptide that included additional viral sequences at the carboxyl terminus of the predicted PLP-1 domain, a fivefold increase in proteolytic activity was observed. The data presented here support previous data suggesting that in vitro and in vivo cleavage of the ORF 1a polyprotein by PLP-1 can occur in both in cis and in trans. In contrast to the cleavage activity demonstrated for PLP-1, no in vitro cleavage in cis or in trans could be detected with PLP-2 expressed either as a polypeptide, including flanking viral sequences, or as an MBP fusion enzyme.
小鼠肝炎病毒(MHV)复制酶基因产物的蛋白水解加工对于病毒复制至关重要。在MHV A59株(MHV - A59)中,复制酶基因编码两个预测的木瓜蛋白酶样蛋白酶(PLP)结构域,即PLP - 1和PLP - 2。先前使用从复制酶基因通过体外转录和翻译合成的病毒多肽底物进行的研究表明,PLP - 1具有顺式和反式切割活性。我们通过使用T7 RNA聚合酶启动子系统或作为麦芽糖结合蛋白(MBP)融合蛋白,在大肠杆菌中克隆并过表达了PLP - 1结构域。在这两种过表达系统中,重组PLP - 1与体外合成的病毒多肽底物孵育时均表现出反式切割活性。随后对重组PLP - 1的表征显示,体外反式切割在22℃比在更高温度下更有效。使用长度增加的底物,我们观察到PLP - 1进行有效切割需要底物大于69 kDa。此外,当PLP - 1表达为在预测的PLP - 1结构域羧基末端包含额外病毒序列的多肽时,观察到蛋白水解活性增加了五倍。此处呈现的数据支持先前的数据,表明PLP - 1对ORF 1a多聚蛋白的体外和体内切割可顺式和反式发生。与PLP - 1所展示的切割活性相反,无论是作为包含侧翼病毒序列的多肽还是作为MBP融合酶表达的PLP - 2,均未检测到顺式或反式的体外切割。