4.3 Article

Differential role of ICAM ligands in determination of human memory T cell differentiation

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BMC IMMUNOLOGY
卷 8, 期 -, 页码 -

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BMC
DOI: 10.1186/1471-2172-8-2

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  1. NHLBI NIH HHS [N01-HV-28183I, N01HV28183] Funding Source: Medline
  2. NIAID NIH HHS [P01-AI39646, R01 AI035304, AI35304] Funding Source: Medline
  3. NIAMS NIH HHS [AR44565, N01-AR-6-2227] Funding Source: Medline
  4. NIH HHS [A1/GF41520-01] Funding Source: Medline

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Background: Leukocyte Function Antigen-1 (LFA-1) is a primary adhesion molecule that plays important roles in T cell activation, leukocyte recirculation, and trans-endothelial migration. By applying a multivariate intracellular phospho-proteomic analysis, we demonstrate that LFA-1 differentially activates signaling molecules. Results: Signal intensity was dependent on both ICAM ligand and LFA-1 concentration. In the presence of CD3 and CD28 stimulation, ICAM-2 and ICAM-3 decreased TGF beta 1 production more than ICAM-1. In long-term differentiation experiments, stimulation with ICAM-3, CD3, and CD28 generated IFN gamma producing CD4+CD45RO+CD62L-CD11a(Bright)CD27-cells that had increased expression of intracellular BCL2, displayed distinct chemokine receptor profiles, and exhibited distinct migratory characteristics. Only CD3/CD28 with ICAM-3 generated CD4+CD45RO+CD62L-CD11a(Bright)CD27-cells that were functionally responsive to chemotaxis and exhibited higher frequencies of cells that signaled to JNK and ERK1/2 upon stimulation with MIP3 alpha. Furthermore, these reports identify that the LFA-1 receptor, when presented with multiple ligands, can result in distinct T cell differentiation states and suggest that the combinatorial integration of ICAM ligand interactions with LFA-1 have functional consequences for T cell biology. Conclusion: Thus, the ICAM ligands, differentially modulate LFA-1 signaling in T cells and potentiate the development of memory human T cells in vitro. These findings are of importance in a mechanistic understanding of memory cell differentiation and ex vivo generation of memory cell subsets for therapeutic applications.

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