Rajendran K S, Pogany J, Nagy P D
Department of Plant Pathology, University of Kentucky, Lexington, Kentucky 40546, USA.
J Virol. 2002 Feb;76(4):1707-17. doi: 10.1128/jvi.76.4.1707-1717.2002.
Turnip crinkle virus (TCV) is a small, plus-sense, single-stranded RNA virus of plants. A virus-coded protein, p88, which is required for replication has been expressed and purified from Escherichia coli. In vitro assays revealed that the recombinant p88 has an RNA-dependent RNA polymerase (RdRp) activity and can also bind to RNA. Deletion of the N-terminal region in p88 resulted in a more active RdRp, while further deletions abolished RdRp activity. Comparison of the E. coli-expressed p88, the N-terminal deletion mutant of p88, and a TCV RdRp preparation obtained from infected plants revealed that these preparations show remarkable similarities in RNA template recognition and usage. Both the recombinant and the plant TCV RdRp preparations are capable of de novo initiation on both plus- and minus-strand satC and satD templates, which are small parasitic RNAs associated with TCV infections. In addition, these RdRp preparations can efficiently recognize the related Tomato bushy stunt virus promoter sequences, including the minus- and plus-strand initiation promoters. Heterologous viral and artificial promoters are recognized poorly by the recombinant and the plant TCV RdRps. Further comparison of the single-component recombinant TCV RdRp and the multicomponent plant TCV RdRp will help dissect the functions of various components of the TCV replicase.
芜菁皱缩病毒(TCV)是一种植物的小型正义单链RNA病毒。一种病毒编码的蛋白质p88,是复制所必需的,已从大肠杆菌中表达并纯化。体外实验表明,重组p88具有RNA依赖性RNA聚合酶(RdRp)活性,并且还能与RNA结合。p88中N端区域的缺失导致RdRp活性更高,而进一步缺失则消除了RdRp活性。对大肠杆菌表达的p88、p88的N端缺失突变体以及从受感染植物中获得的TCV RdRp制剂进行比较,发现这些制剂在RNA模板识别和使用方面表现出显著的相似性。重组和植物TCV RdRp制剂都能够在正链和负链satC和satD模板上从头起始,satC和satD是与TCV感染相关的小型寄生RNA。此外,这些RdRp制剂能够有效识别相关的番茄丛生矮缩病毒启动子序列,包括负链和正链起始启动子。重组和植物TCV RdRp对异源病毒和人工启动子的识别较差。对单组分重组TCV RdRp和多组分植物TCV RdRp的进一步比较将有助于剖析TCV复制酶各组分的功能。