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Human surfactant protein D (SP-D) binds Mycoplasma pneumoniae by high affinity interactions with lipids
Hirofumi Chiba1, Surapon Pattanajitvilai, Amanda J Evans
1Program in Cell Biology, Department of Medicine, National Jewish Medical and Research Center, Denver, Colorado 80206, USA.
Abstract:
Increasing evidence now identifies surfactant protein D (SP-D) as an important element of the innate immune system of the lung. In this study, we examined the interactions of rat and human SP-D with the human pathogen, Mycoplasma pneumoniae. Rat and human SP-D bound the organism with high affinity in a reaction that required Ca(2+) and was inhibited by EGTA. Membranes derived from the organism bound the proteins in a similar manner, except the rat SP-D also exhibited a significant level of Ca(2+)-independent binding. Pretreatment of membranes with proteases did not alter the Ca(2+)-dependent SP-D binding of membranes by either protein. Mannose, glucose, maltose, and inositol, at millimolar concentrations, competed for human SP-D binding to the bacterial membrane. Lipids extracted from membranes and separated by two-dimensional thin layer chromatography bound human SP-D with high affinity in a Ca(2+)-dependent reaction. A tandem mutant of SP-D with E321Q and N323D substitutions, failed to bind M. pneumoniae lipids, directly implicating the carbohydrate recognition domain in the interaction. The interaction of rat and human SP-D with M. pneumoniae was unaffected by the presence of surfactant lipids and the hydrophobic surfactant proteins. These findings demonstrate that M. pneumoniae is likely to be recognized by SP-D in the alveolar environment and that primary determinants recognized on the organism are lipid components of the cell membrane.
Insights
Surfactant protein D (SP-D) binds the lung pathogen Mycoplasma pneumoniae. This interaction involves lipid components on the bacteria and is crucial for innate immunity in the lungs.
Area of Science:
- Pulmonary immunology
- Microbiology
- Innate immunity
Background:
- Surfactant protein D (SP-D) is recognized as a key component of the lung's innate immune system.
- Understanding SP-D's interaction with lung pathogens is vital for respiratory health.
Purpose of the Study:
- To investigate the binding interactions between rat and human SP-D and the pathogen Mycoplasma pneumoniae.
- To identify the specific components of M. pneumoniae recognized by SP-D.
Main Methods:
- SP-D binding assays using whole organisms and derived membranes.
- Protease treatment and lipid extraction to identify binding determinants.
- Carbohydrate competition assays and analysis of SP-D mutants.
Main Results:
- Both rat and human SP-D exhibited high-affinity binding to M. pneumoniae, dependent on calcium (Ca2+).
- Lipid components of the M. pneumoniae cell membrane were identified as the primary binding targets for SP-D.
- A specific SP-D mutant lacking carbohydrate recognition domain function failed to bind M. pneumoniae lipids.
Conclusions:
- M. pneumoniae is likely recognized by SP-D within the alveolar environment.
- The interaction is primarily mediated by lipid components on the bacterial cell membrane.
- SP-D plays a significant role in the innate immune response against M. pneumoniae infections.