Wang Yuhang, Theodore Matthew, Xing Zhongliang, Narsaria Utkarsh, Yu Zihao, Zeng Lanying, Zhang Junjie
Center for Phage Technology, Department of Biochemistry and Biophysics, Texas A&M University, College Station, TX 77843, USA.
Sci Adv. 2024 May 3;10(18):eadl4450. doi: 10.1126/sciadv.adl4450.
Tad (tight adherence) pili, part of the type IV pili family, are crucial for mechanosensing, surface adherence, bacteriophage (phage) adsorption, and cell-cycle regulation. Unlike other type IV pilins, Tad pilins lack the typical globular β sheet domain responsible for pilus assembly and phage binding. The mechanisms of Tad pilus assembly and its interaction with phage ΦCb5 have been elusive. Using cryo-electron microscopy, we unveiled the Tad pilus assembly mechanism, featuring a unique network of hydrogen bonds at its core. We then identified the Tad pilus binding to the ΦCb5 maturation protein (Mat) through its β region. Notably, the amino terminus of ΦCb5 Mat is exposed outside the capsid and phage/pilus interface, enabling the attachment of fluorescent and affinity tags. These engineered ΦCb5 virions can be efficiently assembled and purified in , maintaining infectivity against , which presents promising applications, including RNA delivery and phage display.
紧密黏附(Tad)菌毛是IV型菌毛家族的一部分,对于机械传感、表面黏附、噬菌体吸附和细胞周期调控至关重要。与其他IV型菌毛蛋白不同,Tad菌毛蛋白缺乏负责菌毛组装和噬菌体结合的典型球状β折叠结构域。Tad菌毛的组装机制及其与噬菌体ΦCb5的相互作用一直难以捉摸。我们利用冷冻电子显微镜揭示了Tad菌毛的组装机制,其核心具有独特的氢键网络。然后我们确定Tad菌毛通过其β区域与ΦCb5成熟蛋白(Mat)结合。值得注意的是,ΦCb5 Mat的氨基末端暴露在衣壳和噬菌体/菌毛界面之外,使得荧光标签和亲和标签能够附着。这些经过改造的ΦCb5病毒粒子能够在体内高效组装和纯化,保持对宿主的感染性,这展现出包括RNA递送和噬菌体展示在内的有前景的应用。