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CCL5-CCR5-mediated apoptosis in T cells: Requirement for glycosaminoglycan binding and CCL5 aggregation
Thomas T Murooka1, Mark M Wong, Ramtin Rahbar
1Division of Cellular and Molecular Biology, Toronto General Research Institute, University Health Network, Department of Immunology, University of Toronto, Toronto, Ontario, M5G 2M1, Canada.
Abstract:
CCL5 (RANTES (regulated on activation normal T cell expressed and secreted)) and its cognate receptor, CCR5, have been implicated in T cell activation. CCL5 binding to glycosaminoglycans (GAGs) on the cell surface or in extracellular matrix sequesters CCL5, thereby immobilizing CCL5 to provide the directional signal. In two CCR5-expressing human T cell lines, PM1.CCR5 and MOLT4.CCR5, and in human peripheral blood-derived T cells, micromolar concentrations of CCL5 induce apoptosis. CCL5-induced cell death involves the cytosolic release of cytochrome c, the activation of caspase-9 and caspase-3, and poly(ADP-ribose) polymerase cleavage. CCL5-induced apoptosis is CCR5-dependent, since native PM1 and MOLT4 cells lacking CCR5 expression are resistant to CCL5-induced cell death. Furthermore, we implicate tyrosine 339 as a critical residue involved in CCL5-induced apoptosis, since PM1 cells expressing a tyrosine mutant receptor, CCR5Y339F, do not undergo apoptosis. We show that CCL5-CCR5-mediated apoptosis is dependent on cell surface GAG binding. The addition of exogenous heparin and chondroitin sulfate and GAG digestion from the cell surface protect cells from apoptosis. Moreover, the non-GAG binding variant, (44AANA47)-CCL5, fails to induce apoptosis. To address the role of aggregation in CCL5-mediated apoptosis, nonaggregating CCL5 mutant E66S, which forms dimers, and E26A, which form tetramers at micromolar concentrations, were utilized. Unlike native CCL5, the E66S mutant fails to induce apoptosis, suggesting that tetramers are the minimal higher ordered CCL5 aggregates required for CCL5-induced apoptosis. Viewed altogether, these data suggest that CCL5-GAG binding and CCL5 aggregation are important for CCL5 activity in T cells, specifically in the context of CCR5-mediated apoptosis.
Insights
Chemokine CCL5 (regulated on activation normal T cell expressed and secreted) binding to CCR5 triggers T cell apoptosis. This process requires glycosaminoglycan binding and CCL5 aggregation into tetramers.
Area of Science:
- Immunology
- Cell Biology
Background:
- CCL5 (regulated on activation normal T cell expressed and secreted) and its receptor CCR5 are key in T cell activation.
- CCL5 binding to glycosaminoglycans (GAGs) immobilizes it, facilitating directional signaling.
Purpose of the Study:
- To investigate the mechanisms of CCL5-induced apoptosis in human T cells.
- To determine the roles of CCR5, GAG binding, and CCL5 aggregation in this process.
Main Methods:
- Utilized CCR5-expressing human T cell lines (PM1.CCR5, MOLT4.CCR5) and primary T cells.
- Assessed apoptosis via cytochrome c release, caspase activation, and PARP cleavage.
- Employed CCR5 mutants (CCR5Y339F), GAG-binding deficient CCL5 variants, and CCL5 aggregation mutants (E66S, E26A).
Main Results:
- Micromolar CCL5 concentrations induced CCR5-dependent apoptosis in T cells.
- Apoptosis involved caspase activation and was blocked by inhibiting GAG binding or using a non-aggregating CCL5 mutant (E66S).
- Tyrosine 339 in CCR5 and CCL5 tetramer formation were critical for apoptosis induction.
Conclusions:
- CCL5-induced apoptosis in T cells is dependent on CCR5 engagement.
- Both CCL5 binding to cell surface GAGs and CCL5 aggregation into tetramers are essential for initiating apoptosis.
- These findings highlight novel mechanisms of chemokine-mediated T cell death.
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