4.6 Article

Early and dynamic polarization of T cell membrane rafts and constituents prior to TCR stop signals

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JOURNAL OF IMMUNOLOGY
卷 179, 期 10, 页码 6845-6855

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AMER ASSOC IMMUNOLOGISTS
DOI: 10.4049/jimmunol.179.10.6845

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  1. NCRR NIH HHS [P50 RR015577] Funding Source: Medline
  2. NIAID NIH HHS [R01 AI 48097, T32 AI007633] Funding Source: Medline
  3. NIGMS NIH HHS [R01 GM070001] Funding Source: Medline

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Polarization of membrane rafts and signaling proteins to form an immunological synapse is a hallmark of T cell stimulation. However, the kinetics of raft polarization and associated proteins in relation to the initial contact of the T cell with the APC are poorly defined. We addressed this question by measuring the distribution of membrane-targeted fluorescent protein markers during initial T cell interactions with B cell APCs. Experiments with unpulsed B cells lacking cognate Ag demonstrated an MHC class II-independent capping that was specific to membrane raft markers and required actin rearrangements and signals from Src kinases and PI3K. By live cell imaging experiments, we identified a similar specific polarization of membrane raft markers before TCR-dependent stop signals, and which occurred independently of cognate peptide-MHC class II. T cells conjugated to unpulsed B cells exhibited capping of CD4 and microclusters of the TCR zeta-chain, but only the CD4 enrichment was cholesterol dependent. Furthermore, raft association of CD4 was necessary for its efficient targeting to the Ag-independent caps. Interestingly, anergic V beta 8(+) T cells isolated from staphylococcal enterotoxin B-injected mice did not exhibit Ag-independent capping of membrane rafts, showing that inhibition of these early, Ag-independent events is a property associated with tolerance. Altogether, these data show that membrane raft capping is one of the earliest events in T cell activation and represents one avenue for promoting and regulating downstream peptide-MHC-dependent signaling within the T cell.

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