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Helical structure of Bordetella pertussis fimbriae
Abstract:
The helical structures of Bordetella pertussis fimbriae of serotypes 2 and 6 were determined by optical diffraction analysis of electron micrographs of negatively stained paracrystalline bundles of purified fimbriae. The fimbrial structure is based on an axial repeat of 13 nm that contains five repeating units in two complete turns of a single-start helix. This structure was confirmed by direct measurements of mass per unit length for individual fimbriae performed by dark-field scanning transmission electron microscopy of unstained specimens. These data further established that the helically repeating unit is a monomer of fimbrial protein (Mr congruent to 22,000 for type 2 and Mr congruent to 21,500 for type 6). Radial density profiles calculated from the scanning transmission electron micrographs showed that the fimbria has peak density at its center, i.e., no axial channel, consistent with the results of conventional negative-staining electron microscopy. The radial profile gives an outermost diameter of approximately 7.5 nm, although the peripheral density is, on average, diffuse, allowing sufficient intercalation between adjacent fimbriae to give a center-to-center spacing of approximately 5.5 nm in the paracrystals. Despite serological and biochemical differences between type 2 and type 6 fimbriae, the packing arrangements of their fimbrial subunits are identical. From this observation, we infer that the respective subunits may have in common conserved regions whose packing dictates the helical geometry of the fimbria. It is plausible that a similar mechanism may underlie the phenomenon of phase variations in other systems of bacterial fimbriae.
Insights
Bordetella pertussis fimbriae of serotypes 2 and 6 share identical helical structures, suggesting conserved protein regions dictate their geometry. This finding may explain bacterial fimbrial phase variations.
Area of Science:
- Microbiology
- Structural Biology
- Biophysics
Background:
- Bordetella pertussis fimbriae are crucial virulence factors.
- Understanding fimbrial structure is key to developing effective vaccines and therapies.
- Serotypes 2 and 6 fimbriae exhibit distinct serological and biochemical properties.
Purpose of the Study:
- To elucidate the helical structures of Bordetella pertussis fimbriae (serotypes 2 and 6).
- To determine the structural basis for the identical packing arrangements of fimbrial subunits.
- To infer potential mechanisms underlying bacterial fimbrial phase variations.
Main Methods:
- Optical diffraction analysis of electron micrographs of negatively stained paracrystalline fimbrial bundles.
- Dark-field scanning transmission electron microscopy (STEM) for mass per unit length measurements.
- Calculation of radial density profiles from STEM data.
Main Results:
- B. pertussis fimbriae exhibit a helical structure with a 13 nm axial repeat, comprising five units in two turns.
- The repeating unit is a fimbrial protein monomer (Mr ~22,000 for type 2, ~21,500 for type 6).
- Fimbriae have a central peak density, no axial channel, and an outer diameter of ~7.5 nm, with subunit packing being identical for types 2 and 6.
Conclusions:
- The identical packing of fimbrial subunits in serotypes 2 and 6 suggests conserved regions responsible for helical geometry.
- This conserved structural mechanism may be relevant to phase variation in other bacterial fimbrial systems.
- The findings provide a structural basis for understanding fimbrial assembly and function in B. pertussis.