Structural characterization of the NAP; the major adhesion complex of the human pathogen Mycoplasma genitalium

Margot P Scheffer1, Luis Gonzalez-Gonzalez2, Anja Seybert1

  • 1Buchmann Institute for Molecular Life Sciences, Goethe University Frankfurt, Max-von-Laue Str. 15, Frankfurt 60438, Germany.

Insights

Mycoplasma genitalium's major surface adhesion complex (NAP) has a tetrameric structure with two-fold symmetry. This complex, composed of P140 and P110 proteins, is crucial for bacterial adhesion and motility.

Area of Science:

  • Microbiology
  • Structural Biology
  • Cell Biology

Background:

  • Mycoplasma genitalium causes human diseases like non-gonococcal urethritis and pelvic inflammatory disease.
  • It is a bacterium lacking a peptidoglycan cell wall.
  • The surface adhesion complex (NAP) is vital for M. genitalium adhesion and motility.

Purpose of the Study:

  • To determine the structure of the NAP complex in M. genitalium.
  • To elucidate the protein components of the NAP complex.

Main Methods:

  • Cryo-electron tomography of intact and permeabilized M. genitalium cells.
  • Sub-tomogram averaging to resolve NAP structure.
  • Negative-stain single particle electron microscopy for purified protein complexes.

Main Results:

  • The NAP complex exhibits a tetrameric structure with C2 symmetry.
  • Each NAP unit consists of two pairs of globular lobes (α and β), arranged as a dimer of heterodimers.
  • The β lobes are 20% larger than the α lobes.
  • The NAP complex can tilt relative to the cell membrane.
  • Purified P140/P110 protein complexes closely resemble intact NAPs, indicating they form the extracellular region.

Conclusions:

  • The extracellular region of M. genitalium's NAP is exclusively composed of P140/P110 heterodimers.
  • The structural data provides insights into the mechanism of bacterial adhesion and motility.

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