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c-Cbl expression levels regulate the functional responses of human central and effector memory CD4 T cells
Authors:Brembilla Nicolò C  Weber Johann  Rimoldi Donata  Pradervand Sylvain  Schütz Frédéric  Pantaleo Giuseppe  Rüegg Curzio  Quadroni Manfredo  Harshman Keith  Doucey Marie-Agnès
Affiliation:1 Division of Experimental Oncology, Multidisciplinary Oncology Center and 2 Laboratory of AIDS Immunopathogenesis, Division of Immunology and Allergy, Department of Medicine, Centre Hospitalier Universitaire Vaudois, University of Lausanne, Lausanne; 3 DNA Array Facility, Center for Integrative Genomics, University of Lausanne, Lausanne; 4 Ludwig Institute for Cancer Research, Lausanne Branch, Epalinges; 5 Bioinformatics Core Facility, Swiss Institute of Bioinformatics, Lausanne; and 6 Protein Analysis Facility, Center for Integrative Genomics, University of Lausanne, Lausanne, Switzerland
Abstract:The biochemical mechanisms controlling the diverse functional outcomes of human central memory (CM) and effector memory (EM) T-cell responses triggered through the T-cell receptor (TCR) remain poorly understood. We implemented reverse phase protein arrays to profile TCR signaling components in human CD8 and CD4 memory T-cell subsets isolated ex vivo. As compared with CD4 CM cells, EM cells express statistically significant increased amounts of SLP-76 and reduced levels of c-Cbl, Syk, Fyn, and LAT. Moreover, in EM cells reduced expression of negative regulator c-Cbl correlates with expression of c-Cbl kinases (Syk and Fyn), PI3K, and LAT. Importantly, consistent with reduced expression of c-Cbl, EM cells display a lower functional threshold than CM cells. Increasing c-Cbl content of EM cells to the same level as that of CM cells using cytosolic transduction, we impaired their proliferation and cytokine production. This regulatory mechanism depends primarily on c-Cbl E3 ubiquitin ligase activity as evidenced by the weaker impact of enzymatically deficient c-Cbl C381A mutant on EM cell functions. Our study reports c-Cbl as a critical regulator of the functional responses of memory T cell subsets and identifies for the first time in humans a mechanism controlling the functional heterogeneity of memory CD4 cells.
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