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Qualitative and Quantitative Assays for Detection and Characterization of Protein Antimicrobials
Published on: April 10, 2016
Comparison of the microbicidal and muramidase activities of mouse lysozyme M and P
Philipp Markart1, Nicole Faust, Thomas Graf
1Zentrum für Innere Medizin, Medizinische Klinik II, Klinikstrasse 36, 35392 Giessen, Germany.
Abstract:
Lysozyme is one of the most abundant antimicrobial proteins in the airspaces of the lung. Mice express two lysozyme genes, lysozyme M and P, but only the M enzyme is detected in abundance in lung tissues. Disruption of the lysozyme M locus significantly increased bacterial burden and mortality following intratracheal infection with a Gram-negative bacterium. Unexpectedly, significant lysozyme enzyme activity (muramidase activity) was detected in the airspaces of uninfected lysozyme M-/- mice, amounting to 25% of the activity in wild-type mice. Muramidase activity in lysozyme M-/- mice was associated with increased lysozyme P mRNA and protein in lung tissue and bronchoalveolar lavage fluid respectively. The muramidase activity of recombinant lysozyme P was less than that of recombinant M lysozyme. Recombinant P lysozyme was also less effective in killing selected Gram-negative bacteria, requiring higher concentrations than lysozyme M to achieve the same level of killing. The lower antimicrobial activity of P lysozyme, coupled with incomplete compensation by P lysozyme in lysozyme M-/- mice, probably accounts for the increased susceptibility of null mice to infection. Recombinant lysozyme M and P were equally effective in killing selected Gram-positive organisms. This outcome suggests that disruption of both M and P loci would significantly increase susceptibility to airway infections, particularly those associated with colonization by Gram-positive organisms.
Insights
Lysozyme M is crucial for lung immunity against Gram-negative bacteria. Even without lysozyme M, some enzyme activity remains, but it
Area of Science:
- Immunology
- Microbiology
- Biochemistry
Background:
- Lysozyme is a key antimicrobial protein in lung airspaces.
- Mice have two lysozyme genes: M and P, with M predominant in lung tissue.
Purpose of the Study:
- To investigate the role of lysozyme M in lung immunity.
- To characterize the compensatory role of lysozyme P in lysozyme M-deficient mice.
Main Methods:
- Gene disruption of lysozyme M locus in mice.
- Intratracheal bacterial infection model.
- Measurement of muramidase activity.
- Analysis of lysozyme P mRNA and protein levels.
- Recombinant lysozyme M and P activity assays.
Main Results:
- Lysozyme M-deficient mice showed increased bacterial burden and mortality after Gram-negative infection.
- Significant muramidase activity was detected in lysozyme M-deficient mice, linked to lysozyme P.
- Recombinant lysozyme P exhibited lower muramidase and antimicrobial activity against Gram-negative bacteria compared to lysozyme M.
- Lysozyme M and P showed similar efficacy against Gram-positive bacteria.
Conclusions:
- Incomplete compensation by lysozyme P contributes to increased susceptibility in lysozyme M-deficient mice.
- Disruption of both lysozyme M and P could severely impair airway defense, especially against Gram-positive pathogens.

