Evolution of the major pilus gene cluster of Haemophilus influenzae
T Mhlanga-Mutangadura1, G Morlin, A L Smith
1Division of Biological Sciences, University of Missouri, Columbia, Missouri 65211, USA.
Abstract:
Haemophilus influenzae is a ubiquitous colonizer of the human respiratory tract and causes diseases ranging from otitis media to meningitis. Many H. influenzae isolates express pili (fimbriae), which mediate adherence to epithelial cells and facilitate colonization. The pilus gene (hif) cluster of H. influenzae type b maps between purE and pepN and resembles a pathogenicity island: it is present in invasive strains, absent from the nonpathogenic Rd strain, and flanked by direct repeats of sequence at the insertion site. To investigate the evolution and role in pathogenesis of the hif cluster, we compared the purE-pepN regions of various H. influenzae laboratory strains and clinical isolates. Unlike Rd, most strains had an insert at this site, which usually was the only chromosomal locus of hif DNA. The inserts are diverse in length and organization: among 20 strains, nine different arrangements were found. Several nontypeable isolates lack hif genes but have two conserved open reading frames (hicA and hicB) upstream of purE; their inferred products are small proteins with no data bank homologs. Other isolates have hif genes but lack hic DNA or have combinations of hif and hic genes. By comparing these arrangements, we have reconstructed a hypothetical ancestral genotype, the extended hif cluster. The hif region of INT1, an invasive nontypeable isolate, resembles the hypothetical ancestor. We propose that a progenitor strain acquired the extended cluster by horizontal transfer and that other variants arose as deletions. The structure of the hif cluster may correlate with colonization site or pathogenicity.
Insights
Haemophilus influenzae pili gene clusters vary significantly among strains, suggesting horizontal gene transfer and deletions shaped their evolution. These genetic variations may influence the bacterium's ability to colonize and cause disease.
Area of Science:
- Microbiology
- Genetics
- Evolutionary Biology
Background:
- Haemophilus influenzae causes various infections, with pili aiding colonization.
- The pilus gene (hif) cluster is located between purE and pepN and resembles a pathogenicity island.
Purpose of the Study:
- To investigate the evolution and role in pathogenesis of the hif gene cluster in H. influenzae.
- To compare the purE-pepN regions across different H. influenzae strains and isolates.
Main Methods:
- Comparative analysis of the purE-pepN genomic regions in various H. influenzae strains.
- Reconstruction of a hypothetical ancestral genotype based on observed arrangements.
Main Results:
- Most H. influenzae strains, unlike the Rd strain, possess an insert at the purE-pepN site, with diverse lengths and organizations.
- Nine different arrangements of the hif cluster were identified among 20 strains.
- Some isolates have hic genes (hicA, hicB) instead of or in combination with hif genes, suggesting complex evolutionary pathways.
Conclusions:
- A hypothetical extended hif cluster, acquired by horizontal transfer, is proposed as an ancestral genotype.
- Strain variants likely arose through deletions from this ancestral cluster.
- The structure of the hif cluster may correlate with H. influenzae colonization site and pathogenicity.
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