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分离的重组流感病毒聚合酶异源三聚体的三维模型。

Three-dimensional model for the isolated recombinant influenza virus polymerase heterotrimer.

作者信息

Torreira Eva, Schoehn Guy, Fernández Yolanda, Jorba Núria, Ruigrok Rob W H, Cusack Stephen, Ortín Juan, Llorca Oscar

机构信息

Centro Nacional de Biotecnología (CSIC). Darwin 3, Campus de Cantoblanco. 28049 Madrid, Spain.

出版信息

Nucleic Acids Res. 2007;35(11):3774-83. doi: 10.1093/nar/gkm336. Epub 2007 May 21.

Abstract

The genome of influenza A virus is organized into eight ribonucleoprotein complexes (RNPs), each containing one RNA polymerase complex. This RNA polymerase has also been found non-associated to RNPs and is possibly involved in distinct functions in the infection cycle. We have expressed the virus RNA polymerase complex by co-tranfection of the PB1, PB2 and PA genes in mammalian cells and the heterotrimer was purified by the TAP tag procedure. Its 3D structure was determined by electron microscopy and single-particle image processing. The model obtained resembles the structure previously reported for the polymerase complex associated to viral RNPs but appears to be in a more open conformation. Detailed model comparison indicated that specific areas of the complex show important conformational changes as compared to the structure for the RNP-associated polymerase, particularly in regions known to interact with the adjacent NP monomers in the RNP. Also, the PB2 subunit seems to undergo a substantial displacement as a result of the association of the polymerase to RNPs. The structural model presented suggests that a core conformation of the polymerase in solution exists but the interaction with other partners, such as proteins or RNA, will trigger distinct conformational changes to activate new functional properties.

摘要

甲型流感病毒的基因组被组织成八个核糖核蛋白复合体(RNP),每个复合体包含一个RNA聚合酶复合体。这种RNA聚合酶也被发现与RNP不相关,并且可能在感染周期中参与不同的功能。我们通过在哺乳动物细胞中共转染PB1、PB2和PA基因来表达病毒RNA聚合酶复合体,并通过TAP标签程序纯化异源三聚体。通过电子显微镜和单颗粒图像处理确定了其三维结构。获得的模型类似于先前报道的与病毒RNP相关的聚合酶复合体的结构,但似乎处于更开放的构象。详细的模型比较表明,与RNP相关的聚合酶的结构相比,该复合体的特定区域显示出重要的构象变化,特别是在已知与RNP中相邻NP单体相互作用的区域。此外,由于聚合酶与RNP的结合,PB2亚基似乎发生了显著的位移。所呈现的结构模型表明,溶液中存在聚合酶的核心构象,但与其他伙伴(如蛋白质或RNA)的相互作用将触发不同的构象变化以激活新的功能特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d634/1920261/de2581aaeb2f/gkm336f1.jpg

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