| Literature DB >> 27519475 |
Francisco Llavero1, Alain Artaso2, Hadriano M Lacerda3, Luis A Parada4, José L Zugaza5.
Abstract
Recently, we have reported that the IL-2-stimulated T cells activate PKCθ in order to phosphorylate the serine residues of αPIX-RhoGEF, and to switch on the Rac1/PYGM pathway resulting in T cell migration and proliferation. However, the molecular mechanism connecting the activated IL-2-R with the PKCθ/αPIX/Rac1/PYGM pathway is still unknown. In this study, the use of a combined pharmacological and genetic approach identified Lck, a Src family member, as the tyrosine kinase phosphorylating PLCγ leading to Rac1 and PYGM activation in the IL-2-stimulated Kit 225 T cells via the PKCθ/αPIX pathway. The PLCγ tyrosine phosphorylation was required to activate first PKCθ, and then αPIX and Rac1/PYGM. The results presented here delineate a novel signalling pathway ranking equally in importance to the three major pathways controlled by the IL-2-R, i.e. PI3K, Ras/MAPK and JAK/STAT pathways. The overall evidence strongly indicates that the central biological role of the novel IL-2-R/Lck/PLCγ/PKCθ/αPIX/Rac1/PYGM signalling pathway is directly related to the control of fundamental cellular processes such as T cell migration and proliferation.Entities:
Keywords: Cell migration and proliferation; Glycogen phosphorylase; Lck; Phosphoserine; Phosphotyrosine; Plc; Rac1
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Year: 2016 PMID: 27519475 DOI: 10.1016/j.cellsig.2016.07.014
Source DB: PubMed Journal: Cell Signal ISSN: 0898-6568 Impact factor: 4.315