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Published on: August 20, 2018
Characterization of a Propionibacterium acnes Surface Protein as a Fibrinogen-Binding Protein
Philippe A Grange1, Joël Raingeaud2, Willy Morelle3
1Université Sorbonne Paris Descartes, Faculté de Médecine, INSERM CNRS UMR8104, Institut Cochin U1016, Laboratoire de Dermatologie-CNR Syphilis, Paris, France.
Abstract:
Propionibacterium acnes (P. acnes) is a major skin-associated bacterium that was long considered commensal, until several studies revealed it to be an opportunistic pathogen. We investigated the ability of P. acnes surface proteins to recognize ECM proteins and showed that a 58 kDa P. acnes surface protein was specifically recognized by human fibrinogen (hFg). The 58 kDa protein was further characterized by two-dimensional (2-D) electrophoresis and MALDI-ToF as a P. acnes host cell-surface attachment protein, PA25957, recognizing dermatan sulfate (DsA1). This protein sequence contains 432 amino acids with the presence of three structurally different domains: an N-terminal signal peptide, a C-terminal LPXTG motif, and a PT repeat region. DsA1 is mostly produced during stationary phase. It appears to be highly glycosylated, containing GalNAc residues. Purified DsA1 strongly recognizes the Aα and Bβ subunits of hFg, and specific enzymatic deglycosylation of hFg demonstrated the involvement of the protein backbone in the recognition process. The Bβ subunit of hFg was cloned in four peptide fractions (Fg1-Fg4). The N-terminal Fg1 peptide of hFg was recognized by DsA1, and priming DsA1 with Fg1 inhibited DsA1/hFg recognition. We describe here for the first time, the characterization of a P. acnes surface glycoprotein recognizing human fibrinogen.
Insights
Propionibacterium acnes surface protein PA25957 (DsA1) recognizes human fibrinogen (hFg). This interaction involves specific peptide fractions of hFg, highlighting a novel mechanism for this opportunistic pathogen.
Area of Science:
- Microbiology
- Biochemistry
- Dermatology
Background:
- Propionibacterium acnes (P. acnes) is an opportunistic skin pathogen.
- P. acnes surface proteins' interactions with extracellular matrix (ECM) proteins are not fully understood.
Purpose of the Study:
- To investigate P. acnes surface proteins' recognition of ECM proteins.
- To characterize a specific P. acnes protein that binds human fibrinogen (hFg).
Main Methods:
- Two-dimensional (2-D) electrophoresis and MALDI-ToF mass spectrometry for protein identification.
- Enzymatic deglycosylation of hFg to determine recognition involvement.
- Cloning and peptide fraction analysis of the hFg Bβ subunit.
Main Results:
- A 58 kDa P. acnes surface protein, PA25957 (DsA1), was identified and characterized.
- DsA1 recognizes human fibrinogen (hFg), particularly the Aα and Bβ subunits.
- The N-terminal peptide (Fg1) of the hFg Bβ subunit is recognized by DsA1, and this interaction inhibits DsA1/hFg binding.
Conclusions:
- This study characterizes a novel P. acnes surface glycoprotein, DsA1, with specific recognition of human fibrinogen.
- The findings reveal a new mechanism for P. acnes interaction with host proteins, potentially contributing to its pathogenicity.
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