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Pulmonary collectins play distinct roles in host defense against Mycobacterium avium
Shigeru Ariki1, Takashi Kojima, Shinsei Gasa
1Department of Biochemistry, Sapporo Medical University School of Medicine, Sapporo 060-8556, Japan. sarikscb@sapmed.ac.jp
Abstract:
Pulmonary collectins, surfactant protein A (SP-A) and surfactant protein D (SP-D), play important roles in the innate immunity of the lung. Mycobacterium avium is one of the well-known opportunistic pathogens that can replicate within macrophages. We examined the effects of pulmonary collectins in host defense against M. avium infection achieved via direct interaction between bacteria and collectins. Although both pulmonary collectins bound to M. avium in a Ca(2+)-dependent manner, these collectins revealed distinct ligand-binding specificity and biological activities. SP-A and SP-D bound to a methoxy group containing lipid and lipoarabinomannan, respectively. Binding of SP-D but not SP-A resulted in agglutination of M. avium. A chimeric protein with the carbohydrate recognition domain of SP-D, which chimera revealed a bouquet-like arrangement similar to SP-A, also agglutinated M. avium. The ligand specificity of the carbohydrate recognition domain of SP-D seems to be necessary for agglutination activity. The binding of SP-A strongly inhibited the growth of M. avium in culture media. Although pulmonary collectins did not increase membrane permeability of M. avium, they attenuated the metabolic rate of the bacteria. Observations under a scanning electron microscope revealed that SP-A almost completely covers bacterial surfaces, whereas SP-D binds to certain areas like scattered dots. These observations suggest that a distinct binding pattern of collectins correlates with the difference of their biological activities. Furthermore, the number of bacteria phagocytosed by macrophages was significantly increased in the presence of SP-D. These data indicate that pulmonary collectins play critical roles in host defense against M. avium.
Insights
Pulmonary collectins, surfactant protein A (SP-A) and surfactant protein D (SP-D), are crucial for lung immunity against Mycobacterium avium. These proteins bind differently to M. avium, affecting bacterial growth, metabolism, and macrophage interaction.
Area of Science:
- Immunology
- Microbiology
- Pulmonary Medicine
Background:
- Pulmonary collectins, surfactant protein A (SP-A) and surfactant protein D (SP-D), are key components of innate lung immunity.
- Mycobacterium avium is an opportunistic pathogen that can survive and replicate within macrophages.
Purpose of the Study:
- To investigate the direct interactions between pulmonary collectins (SP-A and SP-D) and Mycobacterium avium.
- To elucidate the distinct roles of SP-A and SP-D in host defense against M. avium infection.
Main Methods:
- Assessing Ca(2+)-dependent binding of SP-A and SP-D to M. avium.
- Analyzing ligand specificity using methoxy group-containing lipid and lipoarabinomannan.
- Evaluating bacterial agglutination, growth inhibition, metabolic rate, and macrophage phagocytosis.
- Utilizing scanning electron microscopy to visualize collectin-bacteria interactions.
Main Results:
- Both SP-A and SP-D bound to M. avium, with SP-D inducing bacterial agglutination.
- SP-A significantly inhibited M. avium growth, while both collectins attenuated bacterial metabolic rate.
- SP-D enhanced macrophage phagocytosis of M. avium.
- Distinct binding patterns of SP-A and SP-D correlated with their differing biological activities.
Conclusions:
- Pulmonary collectins exhibit specific ligand-binding properties and distinct biological activities against M. avium.
- SP-A and SP-D contribute to host defense through varied mechanisms including growth inhibition, metabolic attenuation, and enhanced phagocytosis.
- These findings highlight the critical role of pulmonary collectins in managing M. avium infections in the lung.
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