Key result
CXCL12 stimulation induced flotillin-1 redistribution to lipid rafts, and RNAi inhibition of flotillin-1 impaired CXCL12-mediated signaling and CXCR4 recruitment in human T cells.
Why the study?
Does flotillin-1 play a role in CXCR4 function and signaling in human T cells upon CXCL12 stimulation?
Does flotillin-1 play a role in CXCR4 function and signaling in human T cells upon CXCL12 stimulation?
Flotillin-1 partitioning into lipid rafts is a key mechanism for CXCR4 signaling and function in T cells following CXCL12 stimulation.
Should not yet change practice; leaves open flotillin-1 as a therapeutic target in CXCR4-driven T-cell responses.
Lipid rafts play an important role in signal integration and in the cellular activation of a number of cytokine and growth factor receptors. It has recently been demonstrated that flotillin proteins are recruited to lipid raft microdomains upon cellular activation and play a role in neural cell regeneration, receptor signaling and lymphocyte activation. However, little is known about the relevance of the flotillin proteins during T cell responses to chemoattractant stimulation. To this end, cytoplasmic and lipid raft fractions from human T cells were analyzed for flotillin protein redistribution prior to and after CXCL12 stimulation. Flotillin-1, but not flotillin-2, redistributes to lipid rafts upon CXCR4 ligation. Moreover, in CXCL12-treated T cells, flotillin-1 also associates with several raft proteins including LAT, CD48 and CD11a but not Lck. In addition, an increase in CXCR4 association with flotillin-1 in lipid rafts was observed after chemokine treatment. RNAi technology was also utilized to inhibit the expression of flotillin-1, resulting in an inhibition of CXCL12-mediated signaling, function and CXCR4 recruitment into lipid rafts. Together, these data suggest that the increased association of cellular flotillin-1 with lipid raft microdomains during chemokine exposure may play an important role in chemokine receptor signaling and receptor partitioning with lipid rafts.
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Giri et al. (2007) studied this question. CXCL12 stimulation and RNAi inhibition of flotillin-1 was evaluated on Flotillin protein redistribution and CXCR4 function. CXCL12 stimulation induced flotillin-1 redistribution to lipid rafts, and RNAi inhibition of flotillin-1 impaired CXCL12-mediated signaling and CXCR4 recruitment in human T cells.
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