Expression of type IV pili by Moraxella catarrhalis is essential for natural competence and is affected by iron
Nicole R Luke1, Amy J Howlett, Jianqiang Shao
1Department of Microbiology and Immunology, State University of New York at Buffalo, 14214, USA.
Abstract:
Type IV pili, filamentous surface appendages primarily composed of a single protein subunit termed pilin, play a crucial role in the initiation of disease by a wide range of pathogenic bacteria. Although previous electron microscopic studies suggested that pili might be present on the surface of Moraxella catarrhalis isolates, detailed molecular and phenotypic analyses of these structures have not been reported to date. We identified and cloned the M. catarrhalis genes encoding PilA, the major pilin subunit, PilQ, the outer membrane secretin through which the pilus filament is extruded, and PilT, the NTPase that mediates pilin disassembly and retraction. To initiate investigation of the role of this surface organelle in pathogenesis, isogenic pilA, pilT, and pilQ mutants were constructed in M. catarrhalis strain 7169. Comparative analyses of the wild-type 7169 strain and three isogenic pil mutants demonstrated that M. catarrhalis expresses type IV pili that are essential for natural genetic transformation. Our studies suggest type IV pilus production by M. catarrhalis is constitutive and ubiquitous, although pilin expression was demonstrated to be iron responsive and Fur regulated. These data indicate that additional studies aimed at elucidating the prevalence and role of type IV pili in the pathogenesis and host response to M. catarrhalis infections are warranted.
Insights
Moraxella catarrhalis produces type IV pili, essential for natural genetic transformation. These pili are constitutively expressed but regulated by iron and Fur, warranting further study in pathogenesis.
Area of Science:
- Microbiology
- Bacterial Pathogenesis
- Molecular Biology
Background:
- Type IV pili are critical virulence factors in many pathogenic bacteria.
- Previous studies hinted at pili in Moraxella catarrhalis, but lacked molecular detail.
Purpose of the Study:
- To molecularly and phenotypically characterize type IV pili in Moraxella catarrhalis.
- To investigate the role of type IV pili in M. catarrhalis genetic transformation and pathogenesis.
Main Methods:
- Gene cloning of M. catarrhalis pilA, pilQ, and pilT.
- Construction of isogenic pilA, pilT, and pilQ mutants.
- Comparative phenotypic analysis of wild-type and mutant strains.
Main Results:
- M. catarrhalis expresses functional type IV pili.
- These pili are essential for natural genetic transformation.
- Pilus production is constitutive, iron-responsive, and Fur-regulated.
Conclusions:
- Type IV pili are a key feature of M. catarrhalis, crucial for genetic transformation.
- Further research is needed to understand the role of these pili in M. catarrhalis infections and host responses.
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