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The lipopolysaccharide-recognition mechanism in cells expressing TLR4 and CD14 but lacking MD-2
Takahiro Ohnishi1, Masashi Muroi, Ken-ichi Tanamoto
1Division of Microbiology, National Institute of Health Sciences, Tokyo, Japan.
Abstract:
We analysed the lipopolysaccharide (LPS)-recognition mechanism in cells expressing TLR4 and CD14 but lacking MD-2. When TLR4 and CD14 were transiently expressed in HEK293 cells, cell-surface expression of TLR4 was observed, although the expression level was lower than that in cells coexpressing MD-2. We found that membrane CD14-TLR4 complexes were formed in these cells in response to LPS stimulation even in the absence of MD-2 expression, although NF-kappaB-dependent reporter activity was not induced. A strong activation of NF-kappaB was observed when these cells were stimulated with LPS followed by soluble MD-2 in this order, even when excess LPS was removed after formation of the CD14-TLR4 complex by washing cells prior to sMD-2 addition. From these results, we propose an additional LPS-recognition mechanism. In cells expressing TLR4 and CD14 but lacking MD-2, LPS is first transferred to membrane CD14 with the aid of LPS binding protein, which leads to the formation of the TLR4-CD14 complex. Then, the binding of soluble MD-2 to this complex triggers the transmembrane signal transduction. Cells expressing TLR4 and CD14 but lacking MD-2, such as airway epithelial cells, may be activated in response to LPS by this mechanism.
Insights
Lipopolysaccharide (LPS) recognition involves a novel pathway where MD-2 is not initially required. Cells form complexes with LPS and CD14-TLR4, with soluble MD-2 later triggering signal transduction for immune activation.
Area of Science:
- Immunology
- Cell Biology
Background:
- Lipopolysaccharide (LPS) is a key component of Gram-negative bacteria.
- Toll-like receptor 4 (TLR4) and CD14 are crucial for LPS recognition.
- MD-2 is generally considered essential for TLR4-mediated LPS signaling.
Purpose of the Study:
- To investigate LPS recognition in cells lacking MD-2.
- To elucidate the role of CD14 and TLR4 in LPS binding without MD-2.
- To identify alternative mechanisms of LPS-induced cellular activation.
Main Methods:
- Transient expression of TLR4 and CD14 in HEK293 cells.
- Stimulation with LPS and subsequent addition of soluble MD-2 (sMD-2).
- Analysis of cell-surface receptor expression and NF-kappaB activation.
Main Results:
- TLR4 and CD14 were expressed on the cell surface without MD-2.
- LPS stimulation induced CD14-TLR4 complex formation in the absence of MD-2.
- NF-kappaB activation required sequential stimulation: LPS, then sMD-2, even after LPS removal.
Conclusions:
- An alternative LPS recognition pathway exists, independent of initial MD-2 binding.
- LPS is transferred to membrane CD14, forming a complex with TLR4.
- Subsequent binding of sMD-2 to the CD14-TLR4 complex initiates signal transduction, potentially relevant for cells like airway epithelial cells.
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