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Updated: Feb 27, 2026

Biomimetic Materials to Characterize Bacteria-host Interactions
Published on: November 16, 2015
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.
Abstract:
Mycoplasma genitalium, the causative agent of non-gonococcal urethritis and pelvic inflammatory disease in humans, is a small eubacterium that lacks a peptidoglycan cell wall. On the surface of its plasma membrane is the major surface adhesion complex, known as NAP that is essential for adhesion and gliding motility of the organism. Here, we have performed cryo-electron tomography of intact cells and detergent permeabilized M. genitalium cell aggregates, providing sub-tomogram averages of free and cell-attached NAPs respectively, revealing a tetrameric complex with two-fold rotational (C2) symmetry. Each NAP has two pairs of globular lobes (named α and β lobes), arranged as a dimer of heterodimers with each lobe connected by a stalk to the cell membrane. The β lobes are larger than the α lobes by 20%. Classification of NAPs showed that the complex can tilt with respect to the cell membrane. A protein complex containing exclusively the proteins P140 and P110, was purified from M. genitalium and was structurally characterized by negative-stain single particle EM reconstruction. The close structural similarity found between intact NAPs and the isolated P140/P110 complexes, shows that dimers of P140/P110 heterodimers are the only components of the extracellular region of intact NAPs in M. genitalium.
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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