MRC Centre for Molecular Bacteriology and Infection, Department of Life Sciences, Imperial College, London, SW7 2AZ, UK.
School of Biological and Chemical Sciences, Queen Mary University of London, London, E1 4NS, UK.
Nat Commun. 2021 Nov 25;12(1):6834. doi: 10.1038/s41467-021-27178-8.
Conjugation is one of the most important processes that bacteria utilize to spread antibiotic resistance genes among bacterial populations. Interbacterial DNA transfer requires a large double membrane-spanning nanomachine called the type 4 secretion system (T4SS) made up of the inner-membrane complex (IMC), the outer-membrane core complex (OMCC) and the conjugative pilus. The iconic F plasmid-encoded T4SS has been central in understanding conjugation for several decades, however atomic details of its structure are not known. Here, we report the structure of a complete conjugative OMCC encoded by the pED208 plasmid from E. coli, solved by cryo-electron microscopy at 3.3 Å resolution. This 2.1 MDa complex has a unique arrangement with two radial concentric rings, each having a different symmetry eventually contributing to remarkable differences in protein stoichiometry and flexibility in comparison to other OMCCs. Our structure suggests that F-OMCC is a highly dynamic complex, with implications for pilus extension and retraction during conjugation.
细菌通过共轭将抗生素耐药基因在细菌种群中传播,这是其最重要的过程之一。细菌间的 DNA 转移需要一种大型的双膜跨膜纳米机器,称为 IV 型分泌系统(T4SS),由内膜复合物(IMC)、外膜核心复合物(OMCC)和共轭菌毛组成。标志性的 F 质粒编码的 T4SS 在几十年来的共轭理解中一直处于核心地位,然而其结构的原子细节尚不清楚。在这里,我们通过 cryo-EM 在 3.3Å 分辨率下报告了源自大肠杆菌的 pED208 质粒编码的完整共轭 OMCC 的结构。这个 2.1 MDa 的复合物具有独特的排列方式,有两个径向同心环,每个环具有不同的对称性,最终导致与其他 OMCC 相比,蛋白质的化学计量和柔韧性有显著差异。我们的结构表明,F-OMCC 是一个高度动态的复合物,这对共轭过程中菌毛的延伸和缩回有影响。