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Visualization of uncorrelated tandem symmetry mismatches in the internal genome packaging apparatus of bacteriophage T7

机译:噬菌体T7内部基因组包装设备中不相关的串联对称性错配的可视化

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摘要

Motor-driven packaging of a dsDNA genome into a preformed protein capsid through a unique portal vertex is essential in the life cycle of a large number of dsDNA viruses. We have used single-particle electron cryomicroscopy to study the multilayer structure of the portal vertex of the bacteriophage T7 procapsid, the recipient of T7 DNA in packaging. A focused asymmetric reconstruction method was developed and applied to selectively resolve neighboring pairs of symmetry-mismatched layers of the portal vertex. However, structural features in all layers of the multilayer portal vertex could not be resolved simultaneously. Our results imply that layers with mismatched symmetries can join together in several different relative orientations, and that orientations at different interfaces assort independently to produce structural isomers, a process that we call combinatorial assembly isomerism. This isomerism explains rotational smearing in previously reported asymmetric reconstructions of the portal vertex of T7 and other bacteriophages. Combinatorial assembly isomerism may represent a new regime of structural biology in which globally varying structures assemble from a common set of components. Our reconstructions collectively validate previously proposed symmetries, compositions, and sequential order of T7 portal vertex layers, resolving in tandem the 5-fold gene product 10 (gp10) shell, 12-fold gp8 portal ring, and an internal core stack consisting of 12-fold gp14 adaptor ring, 8-fold bowl-shaped gp15, and 4-fold gp16 tip. We also found a small tilt of the core stack relative to the icosahedral fivefold axis and propose that this tilt assists DNA spooling without tangling during packaging.
机译:通过大量的dsDNA病毒的生命周期,将电机驱动的dsDNA基因组通过独特的门户顶点包装到预先形成的蛋白衣壳中至关重要。我们已经使用单粒子电子低温显微镜研究了噬菌体T7壳体(包装中的T7 DNA的接受者)的门顶顶点的多层结构。提出了一种聚焦的非对称重建方法,并将其应用于选择性地解决门顶点的对称对不匹配层的相邻对问题。但是,多层门户顶点的所有层中的结构特征无法同时解析。我们的结果表明,具有不匹配对称性的层可以以几种不同的相对方向连接在一起,并且在不同界面处的方向​​可以独立地分类以产生结构异构体,这一过程称为组合组装异构。这种异构现象解释了先前报道的T7和其他噬菌体门顶顶点的不对称重建中的旋转涂片。组合组装异构现象可能代表了一种结构生物学的新机制,其中全局变化的结构由一组共同的组分组装而成。我们的重建工作共同验证了先前提出的T7门极顶点层的对称性,组成和顺序,依次解决了5倍的基因产物10(gp10)外壳,12倍的gp8门户环和由12-折叠gp14适配器环,8折叠碗形gp15和4折叠gp16尖端。我们还发现了核心堆叠相对于二十面体五重轴的较小倾斜,并建议这种倾斜有助于DNA绕线而不在包装过程中缠结。

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