Glycogen Synthase Kinase-3 Modulates Cbl-b and Constrains T Cell Activation

糖原合酶激酶-3 调节 Cbl-b 并限制 T 细胞活化

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作者:Charles W Tran, Samuel D Saibil, Thierry Le Bihan, Sara R Hamilton, Karl S Lang, Han You, Amy E Lin, Kristine M Garza, Alisha R Elford, Kelly Tai, Michael E Parsons, Kip Wigmore, Mitchell G Vainberg, Josef M Penninger, James R Woodgett, Tak W Mak, Pamela S Ohashi

Abstract

The decision between T cell activation and tolerance is governed by the spatial and temporal integration of diverse molecular signals and events occurring downstream of TCR and costimulatory or coinhibitory receptor engagement. The PI3K-protein kinase B (PKB; also known as Akt) signaling pathway is a central axis in mediating proximal signaling events of TCR and CD28 engagement in T cells. Perturbation of the PI3K-PKB pathway, or the loss of negative regulators of T cell activation, such as the E3 ubiquitin ligase Cbl-b, have been reported to lead to increased susceptibility to autoimmunity. In this study, we further examined the molecular pathway linking PKB and Cbl-b in murine models. Our data show that the protein kinase GSK-3, one of the first targets identified for PKB, catalyzes two previously unreported phosphorylation events at Ser476 and Ser480 of Cbl-b. GSK-3 inactivation by PKB abrogates phosphorylation of Cbl-b at these two sites and results in reduced Cbl-b protein levels. We further show that constitutive activation of PKB in vivo results in a loss of tolerance that is mediated through the downregulation of Cbl-b. Altogether, these data indicate that the PI3K-PKB-GSK-3 pathway is a novel regulatory axis that is important for controlling the decision between T cell activation and tolerance via Cbl-b.

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