Department of Pathology, Microbiology and Immunology, Vanderbilt University Medical Center, Nashville, TN, United States of America.
Department of Pharmacology, Vanderbilt University, Nashville, TN, United States of America.
PLoS Pathog. 2020 Oct 13;16(10):e1008923. doi: 10.1371/journal.ppat.1008923. eCollection 2020 Oct.
Type III protein secretion systems (T3SS) deliver effector proteins from the Gram-negative bacterial cytoplasm into a eukaryotic host cell through a syringe-like, multi-protein nanomachine. Cytosolic components of T3SS include a portion of the export apparatus, which traverses the inner membrane and features the opening of the secretion channel, and the sorting complex for substrate recognition and for providing the energetics required for protein secretion. Two components critical for efficient effector export are the export gate protein and the ATPase, which are proposed to be linked by the central stalk protein of the ATPase. We present the structure of the soluble export gate homo-nonamer, CdsV, in complex with the central stalk protein, CdsO, of its cognate ATPase, both derived from Chlamydia pneumoniae. This structure defines the interface between these essential T3S proteins and reveals that CdsO engages the periphery of the export gate that may allow the ATPase to catalyze an opening between export gate subunits to allow cargo to enter the export apparatus. We also demonstrate through structure-based mutagenesis of the homologous export gate in Pseudomonas aeruginosa that mutation of this interface disrupts effector secretion. These results provide novel insights into the molecular mechanisms governing active substrate recognition and translocation through a T3SS.
III 型蛋白分泌系统(T3SS)通过类似注射器的多蛋白纳米机器将效应蛋白从革兰氏阴性细菌细胞质输送到真核宿主细胞中。T3SS 的细胞质成分包括一部分出口装置,该装置穿过内膜并具有分泌通道的开口,以及用于底物识别和提供蛋白分泌所需能量的分拣复合物。对于有效效应蛋白输出至关重要的两个组件是出口门蛋白和 ATP 酶,它们被提议通过 ATP 酶的中心柄蛋白连接。我们展示了来自肺炎衣原体的同源 T3S 蛋白 CdsV 的可溶性出口门同型单体与 CdsO 的复合物的结构,CdsO 是其同源 ATP 酶的中央茎蛋白。该结构定义了这些必需的 T3S 蛋白之间的接口,并揭示了 CdsO 与出口门的外围结合,这可能允许 ATP 酶在出口门亚基之间催化开口,以便货物进入出口装置。我们还通过对铜绿假单胞菌中同源出口门的基于结构的突变来证明,该接口的突变会破坏效应蛋白的分泌。这些结果为主动底物识别和通过 T3SS 进行易位的分子机制提供了新的见解。