Mechanobiology Institute, National University of Singapore, bukit timah, 117411, Singapore.
Department of Biochemistry and Molecular Biology, University of Texas Medical Branch, Galveston, TX, 77555, USA.
Small. 2023 Dec;19(52):e2302580. doi: 10.1002/smll.202302580. Epub 2023 Aug 30.
The understanding of actin pedestal formation by enteropathogenic Escherichia coli (EPEC) relies mainly on static ensemble information obtained from cell lysates. Here, the dynamic nature of signaling components on the subsecond timescale, which resemble phase condensates, is demonstrated. Unlike in vitro phase condensates, transfected intimin receptor (Tir) and downstream component form clusters 200 nm in diameter that are spaced ≈500 nm on average, indicating cellular regulation. On supported lipid bilayers with diffusive intimin, Tir-expressing fibroblasts formed Tir-intimin clusters even without Tir tyrosines, although Tir tyrosine phosphorylation is necessary for actin polymerization from clusters. Single-molecule tracking showed that Tir is diffusive in the clusters and exchanges with Tir in the plasma membrane. Further, Nck and N-WASP bind to the clusters and exchange with cytoplasmic molecules. Tir has a similar cluster lifetime to Nck, but longer than that of N-WASP. Actin polymerization from the clusters requires N-WASP binding, involved Arp2/3 activation, and stabilized N-WASP clusters. These dynamic properties are distinct from larger in vitro systems and do not depend significantly upon crosslinking. Thus, Tir-intimin clusters in the plasma membrane are limited in size by exchange and enhance signaling needed for actin polymerization that enables strong and stable bacterial attachment to host cells.
肠致病性大肠杆菌 (EPEC) 形成肌动蛋白足依赖于主要从细胞裂解物中获得的静态整体信息。在此,展示了类似相分离物的信号传导成分在亚秒时间尺度上的动态性质。与体外相分离物不同,转染的紧密素受体 (Tir) 和下游成分形成直径为 200nm 的簇,平均间隔约 500nm,表明存在细胞调节。在含有扩散性紧密素的支持脂质双层上,表达 Tir 的成纤维细胞即使没有 Tir 酪氨酸也能形成 Tir-紧密素簇,尽管 Tir 酪氨酸磷酸化对于从簇中聚合肌动蛋白是必要的。单分子追踪显示 Tir 在簇中是扩散的,并与质膜中的 Tir 交换。此外,Nck 和 N-WASP 结合到簇上并与细胞质分子交换。Tir 的簇寿命与 Nck 相似,但比 N-WASP 长。来自簇的肌动蛋白聚合需要 N-WASP 结合,涉及 Arp2/3 激活,并稳定 N-WASP 簇。这些动态特性与更大的体外系统不同,并且不依赖于交联的显著影响。因此,质膜中的 Tir-紧密素簇在尺寸上受到交换的限制,并增强了肌动蛋白聚合所需的信号传导,从而使细菌能够牢固而稳定地附着在宿主细胞上。