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Updated: Jun 10, 2026

Antigen-Capture Enzyme-Linked Immunosorbent Assay for Specific Detection of Mycoplasma pneumoniae
Published on: February 24, 2023
Identification, expression and serological evaluation of the recombinant ATP synthase beta subunit of Mycoplasma
Hélène Nuyttens1, Camille Cyncynatus, Hélène Renaudin
1InGen BioSciences, Chilly Mazarin, France. hnuyttens@ingenbiosciences.com
Background:
Mycoplasma pneumoniae is responsible for acute respiratory tract infections (RTIs) common in children and young adults. As M. pneumoniae is innately resistant to beta-lactams antibiotics usually given as the first-line treatment for RTIs, specific and early diagnosis is important in order to select the right treatment. Serology is the most used diagnostic method for M. pneumoniae infections.
Results:
In this study, we identified the M. pneumoniae ATP synthase beta subunit (AtpD) by serologic proteome analysis and evaluated its usefulness in the development of a serological assay. We successfully expressed and purified recombinant AtpD (rAtpD) protein, which was recognised by serum samples from M. pneumoniae-infected patient in immunoblots. The performance of the recombinant protein rAtpD was studied using a panel of serum samples from 103 infected patients and 86 healthy blood donors in an in-house IgM, IgA and IgG enzyme-linked immunosorbent assay (ELISA). The results of this assay were then compared with those of an in-house ELISA with a recombinant C-terminal fragment of the P1 adhesin (rP1-C) and of the commercial Ani Labsystems ELISA kit using an adhesin P1-enriched whole-cell extract. Performances of the rAtpD and rP1-C antigen combination were further assessed by binary logistic regression analysis. We showed that combination of rAtpD and rP1-C discriminated maximally between the patients infected with M. pneumoniae (children and adults) and the healthy subjects for the IgM class, performing better than the single recombinant antigens or the commercial whole-cell extract.
Conclusion:
These results suggest that AtpD can be used as an antigen for the immunodiagnosis of early and acute M. pneumoniae infection in association with adhesin P1, providing an excellent starting point for the development of point-of-care diagnostic assays.
Insights
Early diagnosis of Mycoplasma pneumoniae infections is crucial. A new serological assay using ATP synthase beta subunit (AtpD) combined with adhesin P1 shows promise for accurate detection in children and adults.
Area of Science:
- Microbiology
- Immunology
- Diagnostic Development
Background:
- Mycoplasma pneumoniae causes common respiratory tract infections in children and young adults.
- Innate resistance to beta-lactam antibiotics necessitates specific and early diagnosis for effective treatment.
- Serological testing is the predominant diagnostic method for M. pneumoniae infections.
Purpose of the Study:
- To identify and evaluate the Mycoplasma pneumoniae ATP synthase beta subunit (AtpD) as a diagnostic antigen.
- To develop and assess a serological assay utilizing recombinant AtpD (rAtpD) for M. pneumoniae detection.
- To compare the performance of rAtpD-based assays with existing methods.
Main Methods:
- Serologic proteome analysis to identify potential antigens.
- Expression and purification of recombinant AtpD (rAtpD) protein.
- Development of in-house IgM, IgA, and IgG enzyme-linked immunosorbent assays (ELISA) using rAtpD.
- Comparison with assays using recombinant P1 adhesin (rP1-C) and a commercial kit.
Main Results:
- Recombinant AtpD (rAtpD) was recognized by sera from M. pneumoniae-infected patients.
- The rAtpD antigen showed diagnostic potential in ELISA assays.
- A combination of rAtpD and rP1-C demonstrated superior performance in discriminating infected individuals from healthy controls, particularly for IgM detection.
Conclusions:
- AtpD serves as a valuable antigen for the immunodiagnosis of early and acute M. pneumoniae infections.
- Combining AtpD with adhesin P1 enhances diagnostic accuracy.
- These findings provide a foundation for developing point-of-care diagnostic assays for M. pneumoniae.
