Department of Biochemistry and Biophysics, Center for Phage Technology, Texas A&M University, College Station, TX, 77843, USA.
Howard Hughes Medical Institute, Department of Molecular and Cellular Physiology, Stanford University, Stanford, CA, 94305, USA.
Nat Commun. 2019 Jul 16;10(1):3130. doi: 10.1038/s41467-019-11126-8.
Single-stranded RNA bacteriophages (ssRNA phages) infect Gram-negative bacteria via a single maturation protein (Mat), which attaches to a retractile pilus of the host. Here we present structures of the ssRNA phage MS2 in complex with the Escherichia coli F-pilus, showing a network of hydrophobic and electrostatic interactions at the Mat-pilus interface. Moreover, binding of the pilus induces slight orientational variations of the Mat relative to the rest of the phage capsid, priming the Mat-connected genomic RNA (gRNA) for its release from the virions. The exposed tip of the attached Mat points opposite to the direction of the pilus retraction, which may facilitate the translocation of the gRNA from the capsid into the host cytosol. In addition, our structures determine the orientation of the assembled F-pilin subunits relative to the cell envelope, providing insights into the F-like type IV secretion systems.
单链 RNA 噬菌体 (ssRNA 噬菌体) 通过单一成熟蛋白 (Mat) 感染革兰氏阴性细菌,该蛋白附着在宿主的可回缩菌毛上。在这里,我们展示了 ssRNA 噬菌体 MS2 与大肠杆菌 F-菌毛复合物的结构,显示了在 Mat-菌毛界面处存在疏水和静电相互作用网络。此外,菌毛的结合诱导 Mat 相对于噬菌体衣壳的其余部分发生轻微的方向变化,从而使 Mat 连接的基因组 RNA (gRNA) 准备好从病毒粒子中释放。附着的 Mat 的暴露尖端指向菌毛回缩的相反方向,这可能有助于 gRNA 从衣壳转移到宿主细胞质中。此外,我们的结构确定了组装的 F-菌毛亚基相对于细胞包膜的取向,为 F 样 IV 型分泌系统提供了深入了解。