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Updated: Dec 24, 2025

Automated, High-Throughput Detection of Bacterial Adherence to Host Cells
Published on: September 17, 2021
Cell surface processing of the P1 adhesin of Mycoplasma pneumoniae identifies novel domains that bind host molecules
Michael Widjaja1, Iain James Berry1, Veronica Maria Jarocki1
1The ithree institute, University of Technology Sydney, PO Box 123, Broadway, NSW, 2007, Australia.
Abstract:
Mycoplasma pneumoniae is a genome reduced pathogen and causative agent of community acquired pneumonia. The major cellular adhesin, P1, localises to the tip of the attachment organelle forming a complex with P40 and P90, two cleavage fragments derived by processing Mpn142, and other molecules with adhesive and mobility functions. LC-MS/MS analysis of M. pneumoniae M129 proteins derived from whole cell lysates and eluents from affinity matrices coupled with chemically diverse host molecules identified 22 proteoforms of P1. Terminomics was used to characterise 17 cleavage events many of which were independently verified by the identification of semi-tryptic peptides in our proteome studies and by immunoblotting. One cleavage event released 1597TSAAKPGAPRPPVPPKPGAPKPPVQPPKKPA1627 from the C-terminus of P1 and this peptide was shown to bind to a range of host molecules. A smaller synthetic peptide comprising the C-terminal 15 amino acids, 1613PGAPKPPVQPPKKPA1627, selectively bound cytoskeletal intermediate filament proteins cytokeratin 7, cytokeratin 8, cytokeratin 18, and vimentin from a native A549 cell lysate. Collectively, our data suggests that ectodomain shedding occurs on the surface of M. pneumoniae where it may alter the functional diversity of P1, Mpn142 and other surface proteins such as elongation factor Tu via a mechanism similar to that described in Mycoplasma hyopneumoniae.
Insights
Mycoplasma pneumoniae shedding of surface proteins, like P1 adhesin, may alter its function. This process involves cleavage events releasing peptides that bind host molecules, potentially impacting pneumonia pathogenesis.
Area of Science:
- Microbiology
- Molecular Biology
- Pathogen Research
Background:
- Mycoplasma pneumoniae causes community-acquired pneumonia.
- The P1 adhesin is crucial for M. pneumoniae attachment.
- P1 forms a complex with other proteins involved in adhesion and motility.
Purpose of the Study:
- To identify and characterize proteoforms and cleavage events of the P1 adhesin in M. pneumoniae.
- To investigate the host molecule binding capabilities of P1 fragments.
- To explore the potential role of ectodomain shedding in M. pneumoniae surface protein function.
Main Methods:
- Liquid chromatography-tandem mass spectrometry (LC-MS/MS) analysis of M. pneumoniae proteins.
- Affinity matrix purification using diverse host molecules.
- Terminomics to characterize protein cleavage events.
- Immunoblotting and synthetic peptide binding assays.
Main Results:
- Identified 22 proteoforms of the P1 adhesin.
- Characterized 17 cleavage events, including the release of a C-terminal peptide from P1.
- The released P1 peptide demonstrated binding to various host molecules, including cytoskeletal intermediate filament proteins.
Conclusions:
- Ectodomain shedding occurs on the surface of M. pneumoniae.
- This shedding mechanism may modulate the functional diversity of surface proteins like P1, Mpn142, and elongation factor Tu.
- The findings suggest a novel mechanism influencing M. pneumoniae pathogenesis.
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