殖民地化
微管
细菌
细胞生物学
血浆蛋白结合
结合蛋白
生物
微生物学
化学
生物化学
遗传学
基因
作者
Michael S. Costello,Bryan C. Neumann,Bonnie J. Cuthbert,Jana Holubová,Marcela Raimondi,Fernando Garza‐Sánchez,Abdul Samad,Ladislav Bumba,Jacob A. Torres,Nickolas J. Holznecht,Jessica Mendoza,Ondřej Staněk,Sasiprapa Prombhul,Thomas Weimbs,Meghan A. Morrissey,Diego Acosta‐Alvear,David A. Low,Peter Šebo,Celia W. Goulding,Shane Gonen
出处
期刊:
[Cold Spring Harbor Laboratory]
日期:2025-06-17
被引量:1
标识
DOI:10.1101/2025.06.17.660209
摘要
Abstract Pathogenic Bordetella bacteria infect the ciliated respiratory epithelia of mammalian and avian hosts. Several bacterial proteins mediate host cell adhesion, but filamentous hemagglutinin (FhaB) is a principal adhesin because mutants lacking this protein exhibit profound colonization defects. Here, we show that FhaB carries a C-terminal microtubule-binding domain (FhaB-CT), which is translocated into the host-cell cytoplasm to promote bacterial colonization. Cryogenic electron microscopy of microtubule-bound FhaB-CT shows that the domain binds primarily to α-tubulin through a network of polar interactions. Live-cell microscopy of infected tracheal explants reveals that FhaB-CT delivery is required for Bordetella to occupy a niche at the base of cilia on airway epithelia. Finally, we demonstrate that the microtubule-binding domain is required for long-term colonization of the mouse nasal cavity by B. pertussis . These observations suggest that the FhaB-CT domain is delivered into motile cilia, where it interacts with axonemal microtubules. We propose that Bordetella initially adhere to the tips of cilia, then deploy multiple FhaB adhesin molecules to migrate to the base of the cilial forest. This mechanism enables Bordetella to resist removal by the mucociliary ‘escalator’ that clears the respiratory tract of microbes and debris.
科研通智能强力驱动
Strongly Powered by AbleSci AI