Pathogenic Bordetella Bacteria Exploit Axonemal Microtubules to Penetrate the Ciliary Barrier

Respiratory pathogens face a daunting physical challenge during host colonization. Invading microbes must resist elimination by motile respiratory cilia, which beat continuously to sweep debris from the airways. Bacteria have long been known to use adhesive proteins to bind host cells, but recent work shows that Bordetella species utilize an unusual strategy to colonize respiratory epithelia. Bordetella deploy FhaB adhesins that translocate a novel microtubule-binding domain into cilia to interact with the axoneme. These findings reveal FhaB to be a unique adhesive factor that exploits the internal cytoskeleton to colonize a protected niche in the host respiratory tract.

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Publication Details

Journal
Cytoskeleton
Published
2026-09-21
DOI
https://doi.org/10.1002/cm.70205
Primary Topic
Bacterial Infections and Vaccines
Type
article
Field-Weighted Citation Impact
0.00
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article

Pathogenic Bordetella Bacteria Exploit Axonemal Microtubules to Penetrate the Ciliary Barrier

Michael S. Costello, Christopher S. Hayes, Mia W. Raimondi
Cytoskeleton
Bacterial Infections and Vaccines
article

Pathogenic Bordetella Bacteria Exploit Axonemal Microtubules to Penetrate the Ciliary Barrier

Michael S. Costello, Christopher S. Hayes, Mia W. Raimondi
article en

Abstract

Respiratory pathogens face a daunting physical challenge during host colonization. Invading microbes must resist elimination by motile respiratory cilia, which beat continuously to sweep debris from the airways. Bacteria have long been known to use adhesive proteins to bind host cells, but recent work shows that Bordetella species utilize an unusual strategy to colonize respiratory epithelia. Bordetella deploy FhaB adhesins that translocate a novel microtubule-binding domain into cilia to interact with the axoneme. These findings reveal FhaB to be a unique adhesive factor that exploits the internal cytoskeleton to colonize a protected niche in the host respiratory tract.

Cytoskeleton
University of California, Santa Barbara (US), Quantitative BioSciences (US)
Life in Land
Openalex Percentile: Top 13%
Bacterial Infections and Vaccines
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Pathogenic Bordetella Bacteria Exploit Axonemal Microtubules to Penetrate the Ciliary Barrier — Michael S. Costello, Christopher S. Hayes, et al. · Cytoskeleton (2026) | TGRS Research Map | TGRS