Thierry Eric, Guilligay Delphine, Kosinski Jan, Bock Thomas, Gaudon Stephanie, Round Adam, Pflug Alexander, Hengrung Narin, El Omari Kamel, Baudin Florence, Hart Darren J, Beck Martin, Cusack Stephen
European Molecular Biology Laboratory Grenoble Outstation and Unit of Virus Host-Cell Interactions, University Grenoble Alpes-CNRS-EMBL, 71 Avenue des Martyrs, CS 90181, 38042 Grenoble Cedex 9, France.
Structural and Computational Biology Unit, European Molecular Biology Laboratory, Meyerhofstrasse 1, 69117 Heidelberg, Germany.
Mol Cell. 2016 Jan 7;61(1):125-37. doi: 10.1016/j.molcel.2015.11.016. Epub 2015 Dec 17.
Influenza virus polymerase transcribes or replicates the segmented RNA genome (vRNA) into respectively viral mRNA or full-length copies and initiates RNA synthesis by binding the conserved 3' and 5' vRNA ends (the promoter). In recent structures of promoter-bound polymerase, the cap-binding and endonuclease domains are configured for cap snatching, which generates capped transcription primers. Here, we present a FluB polymerase structure with a bound complementary cRNA 5' end that exhibits a major rearrangement of the subdomains within the C-terminal two-thirds of PB2 (PB2-C). Notably, the PB2 nuclear localization signal (NLS)-containing domain translocates ∼90 Å to bind to the endonuclease domain. FluA PB2-C alone and RNA-free FluC polymerase are similarly arranged. Biophysical and cap-dependent endonuclease assays show that in solution the polymerase explores different conformational distributions depending on which RNA is bound. The inherent flexibility of the polymerase allows it to adopt alternative conformations that are likely important during polymerase maturation into active progeny RNPs.
流感病毒聚合酶将分段的RNA基因组(vRNA)转录或复制为病毒mRNA或全长拷贝,并通过结合保守的3'和5' vRNA末端(启动子)启动RNA合成。在最近与启动子结合的聚合酶结构中,帽结合和核酸内切酶结构域被配置用于帽抢夺,从而产生带帽的转录引物。在这里,我们展示了一种与结合的互补cRNA 5'末端结合的FluB聚合酶结构,该结构显示PB2(PB2-C) C末端三分之二内的亚结构域发生了重大重排。值得注意的是,含有PB2核定位信号(NLS)的结构域移位约90 Å以与核酸内切酶结构域结合。单独的FluA PB2-C和无RNA的FluC聚合酶也有类似的排列。生物物理和帽依赖性核酸内切酶分析表明,在溶液中,聚合酶根据结合的RNA不同而探索不同的构象分布。聚合酶固有的灵活性使其能够采用替代构象,这在聚合酶成熟为活性子代核糖核蛋白的过程中可能很重要。