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Ligand Nano-cluster Arrays in a Supported Lipid Bilayer
Published on: April 23, 2017
Lipid raft-based membrane order is important for antigen-specific clonal expansion of CD4(+) T lymphocytes
Daniel Schieffer1,2, Sanya Naware3,4, Walter Bakun5
1Department of Biology, Villanova University, 800 Lancaster Avenue, Villanova, PA, 19085, USA. schiefda@gmail.com.
Insights
Disrupting membrane order in CD4(+) T cells with 7-ketocholesterol (7-KC) significantly reduced antigen-specific clonal expansion. This highlights the critical role of lipid raft-based membrane order in T cell proliferation.
Area of Science:
- Immunology
- Cell Biology
- Membrane Biophysics
Background:
- Lipid rafts are specialized membrane domains crucial for cellular signaling and T cell activation.
- These nanodomains on CD4(+) T lymphocytes coalesce during interactions with antigen-presenting cells (APCs).
- T cell proliferation and differentiation are essential for mounting an effective adaptive immune response.
Purpose of the Study:
- To investigate the role of lipid raft-based membrane order in the clonal expansion of primary CD4(+) T cells.
- To determine if disrupting membrane order affects antigen-specific T cell responses.
Main Methods:
- Incorporated 7-ketocholesterol (7-KC) into the plasma membrane of primary CD4(+) T cells.
- Used T cells expressing a T cell receptor specific to chicken ovalbumin323-339 peptide.
- Assessed the impact of 7-KC on antigen-specific clonal expansion.
Main Results:
- 7-ketocholesterol (7-KC) disrupted lipid rafts at tested concentrations.
- 7-KC significantly diminished the clonal expansion of CD4(+) T cells specific to the model peptide.
- This indicates a direct impact of membrane order disruption on T cell proliferation.
Conclusions:
- Lipid raft-based membrane order is essential for the clonal expansion of CD4(+) T cells.
- Disruption of membrane order impairs the antigen-specific response of T cells.
- These findings underscore the importance of membrane organization in adaptive immunity.
Background:
Lipid rafts are cholesterol and saturated lipid-rich, nanometer sized membrane domains that are hypothesized to play an important role in compartmentalization and spatiotemporal regulation of cellular signaling. Lipid rafts contribute to the plasma membrane order and to its spatial asymmetry, as well. The raft nanodomains on the surface of CD4(+) T lymphocytes coalesce during their interaction with antigen presenting cells (APCs). Sensing of foreign antigen by the antigen receptor on CD4(+) T cells occurs during these cell-cell interactions. In response to foreign antigen the CD4(+) T cells proliferate, allowing the expansion of few antigen-specific primary CD4(+) T cell clones. Proliferating CD4(+) T cells specialize in their function by undergoing differentiation into appropriate effectors tailored to mount an effective adaptive immune response against the invading pathogen.
Results:
To investigate the role of lipid raft-based membrane order in the clonal expansion phase of primary CD4(+) T cells, we have disrupted membrane order by incorporating an oxysterol, 7-ketocholesterol (7-KC), into the plasma membrane of primary CD4(+) T cells expressing a T cell receptor specific to chicken ovalbumin323-339 peptide sequence and tested their antigen-specific response. We report that 7-KC, at concentrations that disrupt lipid rafts, significantly diminish the c-Ovalbumin323-339 peptide-specific clonal expansion of primary CD4(+) T cells.
Conclusions:
Our findings suggest that lipid raft-based membrane order is important for clonal expansion of CD4(+) T cells in response to a model peptide.
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