Liu Xiangan, Perpich John D, Song Liqiang, Cambillau Christian, Doan Thierry, Zheng Lei, Lamont Richard J, Cascales Eric, Hu Bo
Department of Microbiology and Molecular Genetics, McGovern Medical School, Houston, Texas, USA.
Department of Oral Immunology and Infectious Diseases, University of Louisville, Louisville, Kentucky, USA.
mBio. 2025 Sep 10;16(9):e0179925. doi: 10.1128/mbio.01799-25. Epub 2025 Aug 7.
The type IX secretion system (T9SS) is a protein secretion machinery unique to the Bacteroidetes-Chlorobi-Fibrobacteres superphylum, which plays crucial roles in bacterial pathogenesis and gliding motility. It is composed of >15 proteins, including the proton-motive force-dependent PorLM motor, the PorKN ring anchored to the outer membrane, and the Sov translocon. Here, we present the cryo-electron microscopy (EM) structure of the PorKN ring complex from at 3.2 Å resolution. Our structural analysis reveals that PorK contains a repurposed formylglycine-generating enzyme-like fold, which serves as a structural hub for complex assembly rather than enzymatic activity. The complex exhibits a 33-fold symmetry with PorK and PorN assembling two tightly packed and wedged subrings. The structure reveals previously uncharacterized N- and C-terminal helices in PorN that are crucial for PorK binding and complex stability. By combining our high-resolution structure with cryo-electron tomography data, we propose a mechanism whereby PorKN undergoes conformational changes during substrate transport, transitioning between 50° and 90° states relative to the membrane plane. Finally, structural predictions coupled to site-directed disulfide cross-linking identified contacts between PorM and the PorKN ring. Collectively, these findings provide crucial insights into the molecular architecture and dynamic behavior of the T9SS machinery, advancing our understanding of bacterial protein secretion mechanisms.IMPORTANCEThe bacterial type IX secretion system (T9SS) is essential for processes such as gliding motility and secretion of virulence factors. In , a major periodontal pathogen, the T9SS transports over 30 virulence-associated proteins, making it central to disease development. The T9SS core is composed of PorLM motors that are thought to energize the PorKN outer membrane-associated ring. However, the molecular architecture of the PorKN ring has remained unresolved. Here, we present its atomic-resolution cryo-EM structure, revealing a formylglycine-generating enzyme-like fold in PorK that mediates PorK-PorN interactions through specific insertion motifs. Our results show that the ring exhibits intrinsic structural plasticity, including dynamic flexibility and variable stoichiometry. AlphaFold models and disulfide cross-linking experiments further provide information on how PorLM motors are connected to the PorKN ring. These insights redefine our understanding of the T9SS mechanism of action and offer a structural framework for the development of targeted antimicrobial strategies.
IX型分泌系统(T9SS)是拟杆菌-绿菌-纤维杆菌超门特有的一种蛋白质分泌机制,在细菌致病和滑行运动中发挥着关键作用。它由超过15种蛋白质组成,包括质子动力依赖的PorLM马达、锚定在外膜上的PorKN环和Sov转运体。在此,我们展示了来自[具体物种]的PorKN环复合物的冷冻电子显微镜(EM)结构,分辨率为3.2 Å。我们的结构分析表明,PorK含有一种重新利用的生成甲酰甘氨酸的酶样折叠,它作为复合物组装的结构枢纽而非酶活性中心。该复合物呈现出33重对称性,PorK和PorN组装成两个紧密堆积且相互楔合的子环。该结构揭示了PorN中先前未被表征的N端和C端螺旋,它们对于PorK结合和复合物稳定性至关重要。通过将我们的高分辨率结构与冷冻电子断层扫描数据相结合,我们提出了一种机制,即PorKN在底物转运过程中经历构象变化,相对于膜平面在50°和90°状态之间转变。最后,结合定点二硫键交联的结构预测确定了PorM与PorKN环之间的接触。总的来说,这些发现为T9SS机制的分子结构和动态行为提供了关键见解,推进了我们对细菌蛋白质分泌机制的理解。
细菌IX型分泌系统(T9SS)对于滑行运动和毒力因子分泌等过程至关重要。在[主要牙周病原体名称]中,T9SS运输超过30种与毒力相关的蛋白质,使其成为疾病发展的核心。T9SS核心由PorLM马达组成,据认为这些马达为与外膜相关的PorKN环提供能量。然而,PorKN环的分子结构一直未得到解析。在此,我们展示了其原子分辨率的冷冻电镜结构,揭示了PorK中一种生成甲酰甘氨酸的酶样折叠,它通过特定的插入基序介导PorK与PorN的相互作用。我们的结果表明,该环具有内在的结构可塑性,包括动态灵活性和可变的化学计量。AlphaFold模型和二硫键交联实验进一步提供了关于PorLM马达如何与PorKN环连接的信息。这些见解重新定义了我们对T9SS作用机制的理解,并为开发靶向抗菌策略提供了结构框架。