Structural organization of the fibrinogen-binding region of the clumping factor B MSCRAMM of Staphylococcus aureus

S Perkins1, E J Walsh, C C Deivanayagam

  • 1Institute for Biosciences and Technology, Texas Medical Center, Houston Texas 77030, USA.

Insights

The clumping factor B (ClfB) A-region of Staphylococcus aureus has three subdomains (N1, N2, N3). Subdomain N23 binds fibrinogen with high affinity, crucial for bacterial adherence.

Area of Science:

  • Microbiology
  • Structural Biology
  • Biochemistry

Background:

  • Staphylococcus aureus uses clumping factor B (ClfB) to bind fibrinogen, aiding bacterial adhesion.
  • The ligand-binding activity resides in the A-region (residues 44-542) of ClfB.
  • The A-region's structure and subdomain composition are not fully understood.

Purpose of the Study:

  • To investigate the hypothesis that the ClfB A-region comprises three distinct subdomains (N1, N2, N3).
  • To characterize the structural and functional properties of these subdomains and their role in fibrinogen binding.

Main Methods:

  • Expression and purification of recombinant ClfB subdomains (N1, N2, N3), tandem motifs (N12, N23), and full-length A-region (N123).
  • Far UV circular dichroism spectroscopy to assess secondary structure.
  • Gel permeation chromatography to determine domain shape.
  • Fibrinogen binding assays and inhibition studies using recombinant proteins and antibodies.

Main Results:

  • Each subdomain (N1, N2, N3) is primarily beta-sheet rich and folds as a discrete unit.
  • N1 is elongated, while N2, N3, and N23 are globular.
  • N23 exhibited higher fibrinogen binding affinity than N123 or N12, but required an intact N-terminus.
  • Recombinant N23 and N123 inhibited bacterial adherence to fibrinogen; N12 was inactive.
  • Antibodies against N2 were most effective in blocking bacterial adhesion.

Conclusions:

  • The ClfB A-region is composed of three distinct subdomains: N1, N2, and N3.
  • The N23 subdomain, with its N-terminal extension, is critical for high-affinity fibrinogen binding and bacterial adherence.
  • Targeting the N2 domain with antibodies can effectively inhibit Staphylococcus aureus adhesion.

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