Sarin L Peter, Wright Sam, Chen Qing, Degerth Linda H, Stuart David I, Grimes Jonathan M, Bamford Dennis H, Poranen Minna M
Department of Biosciences, University of Helsinki, Biocenter 2, 00014 University of Helsinki, Finland.
Virology. 2012 Oct 10;432(1):184-93. doi: 10.1016/j.virol.2012.05.035. Epub 2012 Jul 6.
Double-stranded RNA viruses encode a single protein species containing RNA-dependent RNA polymerase (RdRP) motifs. This protein is responsible for RNA transcription and replication. The architecture of viral RdRPs resembles that of a cupped right hand with fingers, palm and thumb domains. Those using de novo initiation have a flexible structural elaboration that constitutes the priming platform. Here we investigate the properties of the C-terminal priming domain of bacteriophage ϕ6 to get insights into the role of an extended loop connecting this domain to the main body of the polymerase. Proteolyzed ϕ6 RdRP that possesses a nick in the hinge region of this loop was better suited for de novo initiation. The clipped C-terminus remained associated with the main body of the polymerase via the anchor helix. The structurally flexible hinge region appeared to be involved in the control of priming platform movement. Moreover, we detected abortive initiation products for a bacteriophage RdRP.
双链RNA病毒编码一种含有RNA依赖的RNA聚合酶(RdRP)基序的单一蛋白质。这种蛋白质负责RNA转录和复制。病毒RdRP的结构类似于一只握成杯状的右手,有手指、手掌和拇指结构域。那些使用从头起始的RdRP具有构成引发平台的灵活结构细化。在这里,我们研究噬菌体ϕ6的C端引发结构域的特性,以深入了解连接该结构域与聚合酶主体的延伸环的作用。在该环的铰链区有切口的经蛋白酶解的ϕ6 RdRP更适合从头起始。截短的C端通过锚定螺旋与聚合酶主体保持关联。结构灵活的铰链区似乎参与了引发平台运动的控制。此外,我们检测到了一种噬菌体RdRP的流产起始产物。