Redzej Adam, Ukleja Marta, Connery Sarah, Trokter Martina, Felisberto-Rodrigues Catarina, Cryar Adam, Thalassinos Konstantinos, Hayward Richard D, Orlova Elena V, Waksman Gabriel
Department of Biological Sciences, Institute of Structural and Molecular Biology, Birkbeck, London, UK.
Division of Biosciences, Institute of Structural and Molecular Biology, University College of London, London, UK.
EMBO J. 2017 Oct 16;36(20):3080-3095. doi: 10.15252/embj.201796629. Epub 2017 Sep 18.
Type IV secretion (T4S) systems are versatile bacterial secretion systems mediating transport of protein and/or DNA T4S systems are generally composed of 11 VirB proteins and 1 VirD protein (VirD4). The VirB1-11 proteins assemble to form a secretion machinery and a pilus while the VirD4 protein is responsible for substrate recruitment. The structure of VirD4 in isolation is known; however, its structure bound to the VirB1-11 apparatus has not been determined. Here, we purify a T4S system with VirD4 bound, define the biochemical requirements for complex formation and describe the protein-protein interaction network in which VirD4 is involved. We also solve the structure of this complex by negative stain electron microscopy, demonstrating that two copies of VirD4 dimers locate on both sides of the apparatus, in between the VirB4 ATPases. Given the central role of VirD4 in type IV secretion, our study provides mechanistic insights on a process that mediates the dangerous spread of antibiotic resistance genes among bacterial populations.
IV型分泌(T4S)系统是多功能的细菌分泌系统,介导蛋白质和/或DNA的转运。T4S系统通常由11种VirB蛋白和1种VirD蛋白(VirD4)组成。VirB1 - 11蛋白组装形成分泌机制和菌毛,而VirD4蛋白负责底物募集。孤立状态下VirD4的结构是已知的;然而,其与VirB1 - 11装置结合的结构尚未确定。在这里,我们纯化了结合有VirD4的T4S系统,确定了复合物形成的生化要求,并描述了VirD4参与的蛋白质 - 蛋白质相互作用网络。我们还通过负染电子显微镜解析了该复合物的结构,证明两个VirD4二聚体拷贝位于装置两侧,在VirB4 ATP酶之间。鉴于VirD4在IV型分泌中的核心作用,我们的研究为介导抗生素抗性基因在细菌群体中危险传播的过程提供了机制性见解。