Sir William Dunn School of Pathology, University of Oxford, Oxford, OX13RE, UK.
Department of Chemistry, University of Oxford, Oxford, UK.
Nat Commun. 2020 Mar 10;11(1):1296. doi: 10.1038/s41467-020-15071-9.
Protein secretion through type-three secretion systems (T3SS) is critical for motility and virulence of many bacteria. Proteins are transported through an export gate containing three proteins (FliPQR in flagella, SctRST in virulence systems). A fourth essential T3SS protein (FlhB/SctU) functions to "switch" secretion substrate specificity once the growing hook/needle reach their determined length. Here, we present the cryo-electron microscopy structure of an export gate containing the switch protein from a Vibrio flagellar system at 3.2 Å resolution. The structure reveals that FlhB/SctU extends the helical export gate with its four predicted transmembrane helices wrapped around FliPQR/SctRST. The unusual topology of the FlhB/SctU helices creates a loop wrapped around the bottom of the closed export gate. Structure-informed mutagenesis suggests that this loop is critical in gating secretion and we propose that a series of conformational changes in the T3SS trigger opening of the gate through interactions between FlhB/SctU and FliPQR/SctRST.
III 型分泌系统(T3SS)的蛋白分泌对许多细菌的运动性和毒力至关重要。蛋白质通过一个含有三种蛋白质(鞭毛中的 FliPQR,毒力系统中的 SctRST)的出口门进行运输。第四个必需的 T3SS 蛋白(FlhB/SctU)的作用是在生长的钩/针达到其确定的长度后,“切换”分泌底物特异性。在这里,我们以 3.2 Å 的分辨率呈现了一个含有来自 Vibrio 鞭毛系统的开关蛋白的出口门的冷冻电子显微镜结构。该结构表明,FlhB/SctU 用其四个预测的跨膜螺旋围绕 FliPQR/SctRST 延伸了螺旋形的出口门。FlhB/SctU 螺旋的异常拓扑结构形成了一个围绕关闭的出口门底部的环。结构信息指导的突变分析表明,该环在门控分泌中至关重要,我们提出 T3SS 中的一系列构象变化通过 FlhB/SctU 和 FliPQR/SctRST 之间的相互作用触发门的打开。