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Binding of lipopolysaccharide (LPS) to CHO cells does not correlate with LPS-induced NF-kappaB activation
L Hamann1, R R Schumann, H D Flad
1Research Center Borstel Center for Medicine and Bioscience, Borstel, Germany. lhamann@fz-borstel.de
Abstract:
Activation of myeloid cells by lipopolysaccharide (LPS) is a key event in the development of gram-negative sepsis. One crucial step within this process is the binding of LPS to CD14. CD14 is a glycosylphosphatidylinositol (GPI)-anchored membrane protein requiring at least one additional membrane-spanning molecule for signal transduction. It is not clear whether the function of CD14 is to merely catalyze LPS binding, followed by the interaction of LPS with the signal transducer, or whether CD14 has a more specific function and may be a part of the signaling complex. To address this question we generated Chinese hamster ovary (CHO) cells expressing a human GPI-anchored form of LPS-binding protein (mLBP) to substitute for CD14 as LPS acceptor molecule. By comparison of CHO / mLBP with CHO / vector and CHO / CD14 cells we found that expression of GPI-linked LBP results in an enhanced binding of LPS but not in an increase in cell activation as determined by translocation of NF-kappaB. Furthermore, excess of recombinant soluble LBP resulted also in increased LPS binding without affecting NF-kappaB translocation. These data show that LPS binding alone is not sufficient to induce signaling. We conclude that CD14 is more than a catalyst for LPS binding: it seems to be directly involved in LPS signaling and thus appears to be an essential part of the signaling complex.
Insights
Lipopolysaccharide (LPS) binding to CD14 initiates sepsis signaling. Studies show LPS binding alone doesn't trigger cell activation, indicating CD14's direct role in sepsis signaling.
Area of Science:
- Immunology
- Cell Biology
- Molecular Biology
Background:
- Lipopolysaccharide (LPS) binding to CD14 is critical for gram-negative sepsis development.
- CD14 is a GPI-anchored protein; its precise role in LPS-induced signaling is debated.
Purpose of the Study:
- To investigate whether LPS binding alone is sufficient for cell activation.
- To determine if CD14 acts solely as an LPS acceptor or is integral to the signaling complex.
Main Methods:
- Generated Chinese hamster ovary (CHO) cells expressing human GPI-anchored LPS-binding protein (mLBP) to replace CD14.
- Compared LPS binding and NF-kappaB translocation in CHO/mLBP, CHO/vector, and CHO/CD14 cells.
- Assessed the effect of recombinant soluble LBP on LPS binding and NF-kappaB translocation.
Main Results:
- Expression of GPI-linked LBP enhanced LPS binding but did not increase NF-kappaB translocation (cell activation).
- Excess soluble LBP increased LPS binding without affecting NF-kappaB translocation.
- LPS binding alone is insufficient to induce signaling.
Conclusions:
- CD14 is more than an LPS binding catalyst; it is directly involved in LPS-induced signaling.
- CD14 appears to be an essential component of the LPS signaling complex.