DnaK Functions as a Moonlighting Protein on the Surface of Mycoplasma hyorhinis Cells

Yao Li1,2, Jia Wang2,3, Beibei Liu2

  • 1School of Life Sciences, Jiangsu University, Zhenjiang, China.

Insights

Mycoplasma hyorhinis DnaK protein aids bacterial infection by adhering to host cells and extracellular matrix components. This moonlighting protein also interacts with plasminogen, enhancing its activation, and shows immunogenicity in pigs.

Area of Science:

  • Microbiology
  • Molecular Biology
  • Bacterial Pathogenesis

Background:

  • Mycoplasma hyorhinis is a swine pathogen linked to human tumors, with unclear pathogenic mechanisms.
  • DnaK, a heat-shock protein 70 family member, functions as a moonlighting protein in bacteria.
  • Understanding M. hyorhinis DnaK's role is crucial for elucidating its pathogenesis.

Purpose of the Study:

  • To investigate the moonlighting functions of Mycoplasma hyorhinis DnaK.
  • To determine DnaK's surface exposure and its interactions with host cells and extracellular matrix.
  • To assess DnaK's role in plasminogen activation and its immunogenicity.

Main Methods:

  • Surface exposure of M. hyorhinis DnaK was identified.
  • Recombinant M. hyorhinis DnaK (rMhr-DnaK) was used to test adherence to swine and human cell lines.
  • Binding assays with extracellular matrix components and plasminogen were performed.
  • Plasminogen activation by tissue-type plasminogen activator (tPA) in the presence of rMhr-DnaK was analyzed.

Main Results:

  • Virulent M. hyorhinis strains showed higher surface DnaK expression than avirulent strains.
  • rMhr-DnaK adhered to PK-15 (swine) and NCI-H292 (human) cells.
  • rMhr-DnaK bound to fibronectin, laminin, type IV collagen, and vitronectin.
  • rMhr-DnaK interacted with plasminogen, enhancing its activation by tPA.

Conclusions:

  • M. hyorhinis DnaK is a surface-exposed, multifunctional moonlighting protein.
  • DnaK likely contributes to M. hyorhinis infection by facilitating cell adhesion and modulating the host's fibrinolytic system.
  • DnaK exhibits significant immunogenicity, suggesting its potential as a vaccine target.

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