Composition and Potency Characterization of Mycobacterium avium subsp. paratuberculosis Purified Protein Derivatives
Randal T Capsel1, Charles O Thoen2, Timothy A Reinhardt3
1National Veterinary Services Laboratories, U.S. Department of Agriculture-AHPIS, Ames, Iowa, United States of America.
Abstract:
Mycobacterium avium subsp. paratuberculosis (MAP) purified protein derivatives (PPDs) are immunologic reagents prepared from cultured filtrates of the type strain. Traditional production consists of floating culture incubation at 37°C, organism inactivation by autoclaving, coarse filtration, and protein precipitation. Three traditional production PPDs were used in this study including lot 9801, which served as a reference and has been used in the field for decades. Alternative production PPDs (0902A and 0902B), in which the autoclaving step was removed, were also analyzed in this study. SDS-PAGE analysis revealed protein smearing in traditional PPDs, but distinct bands were observed in the alternative PPD preparations. Antibody bound distinct protein bands in the alternative PPDs by immunoblot analysis, whereas an immunoreactive smear was observed with the traditional PPDs. Mass spectrometry identified 194 proteins among three PPD lots representing the two different production methods, ten of which were present in all PPDs examined. Selected proteins identified by mass spectrometry were recombinantly expressed and purified from E. coli and evaluated by the guinea pig potency test. Seven recombinant proteins showed greater erythema as compared to the reference PPD lot 9801 in paired guinea pigs and were able to stimulate interferon-gamma production in blood from Johne's positive animals. These results suggest that autoclaving culture suspensions is not a necessary step in PPD production and specific proteins could supplant the PPD antigen for intradermal skin testing procedures and for use as in-vitro assay reagents.
Insights
Removing the autoclaving step from Mycobacterium avium subsp. paratuberculosis (MAP) purified protein derivatives (PPDs) production yields distinct proteins. These specific proteins show potential to replace traditional PPDs for diagnostics in Johne's disease.
Area of Science:
- Veterinary immunology
- Bacteriology
- Protein chemistry
Background:
- Mycobacterium avium subsp. paratuberculosis (MAP) purified protein derivatives (PPDs) are crucial immunologic reagents for diagnosing Johne's disease.
- Traditional MAP PPD production involves autoclaving, which may obscure specific antigenic components.
- Understanding MAP PPD composition is vital for improving diagnostic accuracy.
Purpose of the Study:
- To compare traditional and alternative MAP PPD production methods.
- To identify specific protein antigens within MAP PPDs.
- To evaluate the diagnostic potential of alternative PPDs and specific recombinant proteins.
Main Methods:
- Analysis of traditional and alternative MAP PPDs using SDS-PAGE and immunoblotting.
- Protein identification via mass spectrometry.
- Recombinant protein expression and purification.
- Guinea pig potency testing and interferon-gamma assays.
Main Results:
- Alternative PPDs, lacking autoclaving, showed distinct protein bands unlike the smeared proteins in traditional PPDs.
- Mass spectrometry identified 194 proteins, with 10 common to all PPD lots.
- Seven recombinant proteins elicited stronger immune responses than reference PPD in guinea pigs and stimulated interferon-gamma in affected animals.
Conclusions:
- Autoclaving is not essential for MAP PPD production.
- Specific recombinant proteins derived from MAP can serve as effective alternatives to traditional PPDs.
- These findings pave the way for more precise immunodiagnostic reagents for Johne's disease.
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