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Helical structure of Bordetella pertussis fimbriae

Journal of Bacteriology
|September 1, 1986
PubMed

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.

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