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Identification of Re lipopolysaccharide-binding protein on murine erythrocyte membrane
1Department of Bacteriology, Faculty of Medicine, Iwate Medical University.
Abstract:
Our recent studies have suggested that bacterial lipopolysaccharide (LPS) attaches to Pronase-sensitive proteins on the murine erythrocyte membrane. In the present study, in order to identify the LPS-binding protein on the murine erythrocyte membrane, a unique method to detect LPS-binding protein on a nitrocellulose membrane was developed. Murine erythrocyte membrane proteins were separated by sodium dodecyl sulfate-polyacrylamide gel electrophoresis, then transferred electrophoretically onto a nitrocellulose membrane. The membrane was incubated with LPS of Salmonella minnesota R595 (Re LPS) in phosphate-buffered saline (PBS), after the remaining sites were blocked with gelatin in PBS. We were able to obtain a non-background stain by adding the nonionic detergent octylglucoside at the low concentration of 0.1% to the Re LPS solution. The Re LPS bound to the protein on the nitrocellulose membrane was exposed to affinity purified anti-Re LPS antibodies (IgG) and then to alkaline phosphatase-conjugated anti-IgG. The alkaline phosphatase was detected on the membrane by an enzymatic reaction. This method demonstrated that Re LPS was bound to an erythrocyte protein of 96 kDa. Treatment of erythrocytes with Pronase led to disappearance of the Re LPS-binding protein on the erythrocyte membrane. There was no difference between LPS-responder and LPS-nonresponder murine erythrocyte membranes in amount and molecular weight of the Re LPS-binding protein.
Insights
Researchers identified a 96 kDa protein on murine erythrocyte membranes that binds bacterial lipopolysaccharide (LPS). This protein is sensitive to Pronase treatment, confirming its role in LPS interaction and immune response.
Area of Science:
- Immunology
- Cell Biology
- Biochemistry
Background:
- Bacterial lipopolysaccharide (LPS) interaction with host cells is crucial in immune responses.
- Previous studies indicated LPS binds to Pronase-sensitive proteins on murine erythrocyte membranes.
Purpose of the Study:
- To identify the specific LPS-binding protein on the murine erythrocyte membrane.
- To develop a novel method for detecting LPS-binding proteins.
Main Methods:
- Developed a method using nitrocellulose membranes for LPS-binding protein detection.
- Separated erythrocyte membrane proteins via SDS-PAGE and transferred to nitrocellulose.
- Incubated membrane with Re LPS, followed by antibody detection and enzymatic reaction.
Main Results:
- Identified a 96 kDa protein that binds Re LPS on murine erythrocyte membranes.
- Pronase treatment eliminated the Re LPS-binding protein.
- No significant differences were observed between LPS-responder and non-responder murine erythrocyte membranes.
Conclusions:
- A 96 kDa Pronase-sensitive protein is responsible for LPS binding on murine erythrocytes.
- The developed method is effective for identifying LPS-binding proteins.
- This protein's presence is consistent across different murine LPS response phenotypes.