Institute for Bioscience and Biotechnology Research, University of Maryland, 9600 Gudelsky Drive, Rockville, MD, 20850, USA.
Department of Chemistry and Biochemistry, University of Maryland, Chemistry Building, 8051 Regents Drive, College Park, MD, 20742, USA.
Sci Rep. 2022 Feb 8;12(1):2061. doi: 10.1038/s41598-022-06073-2.
Four tailspike proteins (TSP1-4) of Escherichia coli O157:H7 bacteriophage CBA120 enable infection of multiple hosts. They form a branched complex that attaches to the tail baseplate. Each TSP recognizes a different lipopolysaccharide on the membrane of a different bacterial host. The 335 N-terminal residues of TSP4 promote the assembly of the TSP complex and anchor it to the tail baseplate. The crystal structure of TSP4-N reveals a trimeric protein comprising four domains. The baseplate anchor domain (AD) contains an intertwined triple-stranded β-helix. The ensuing XD1, XD2 and XD3 β-sheet containing domains mediate the binding of TSP1-3 to TSP4. Each of the XD domains adopts the same fold as the respective XD domains of bacteriophage T4 gp10 baseplate protein, known to engage in protein-protein interactions via its XD2 and XD3 domains. The structural similarity suggests that XD2 and XD3 of TSP4 also function in protein-protein interactions. Analytical ultracentrifugation analyses of TSP4-N and of domain deletion proteins showed how TSP4-N promotes the formation of the TSP quaternary complex. TSP1 and TSP2 bind directly to TSP4 whereas TSP3 binding requires a pre-formed TSP4-N:TSP2 complex. A 3-dimensional model of the bacteriophage CBA120 TSP complex has been developed based on the structural and ultracentrifuge information.
大肠杆菌 O157:H7 噬菌体 CBA120 的四个尾刺蛋白 (TSP1-4) 能够感染多种宿主。它们形成一个分支复合物,附着在尾基板上。每个 TSP 识别不同细菌宿主细胞膜上的不同脂多糖。TSP4 的 335 个 N 端残基促进 TSP 复合物的组装并将其锚定在尾基板上。TSP4-N 的晶体结构揭示了一种由四个结构域组成的三聚体蛋白。基板锚定结构域 (AD) 包含一个交织的三链β-螺旋。接下来的 XD1、XD2 和 XD3 β-折叠结构域介导 TSP1-3 与 TSP4 的结合。每个 XD 结构域都采用与噬菌体 T4 gp10 基板蛋白的相应 XD 结构域相同的折叠方式,已知其通过 XD2 和 XD3 结构域参与蛋白-蛋白相互作用。结构相似性表明 TSP4 的 XD2 和 XD3 也在蛋白-蛋白相互作用中发挥作用。TSP4-N 和结构域缺失蛋白的分析超速离心分析表明,TSP4-N 如何促进 TSP 四元复合物的形成。TSP1 和 TSP2 直接与 TSP4 结合,而 TSP3 结合需要预先形成的 TSP4-N:TSP2 复合物。基于结构和超速离心信息,我们构建了噬菌体 CBA120 TSP 复合物的三维模型。