Publication | Open Access
<scp>S</scp>os1 regulates sustained <scp>TCR</scp>‐mediated <scp>E</scp>rk activation
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Citations
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References
2014
Year
Rasgrp1 ExpressionMolecular RegulationImmunologyCell DeathCellular PhysiologyTranscriptional RegulationSignaling PathwayReceptor Tyrosine KinaseCellular Regulatory MechanismErk ActivationCell SignalingMolecular SignalingTransient Erk ActivationGene ExpressionCell BiologySignal TransductionPhysiologySystems BiologyMedicine
The duration and/or the magnitude of Ras-Erk activation are known to be crucial for cell-fate decisions. In T cells, sustained Erk activation correlates with differentiation/proliferation, whereas transient Erk activation parallels with unresponsiveness/apoptosis. The mechanism by which Son of sevenless (Sos) proteins and Ras guanyl-releasing protein 1 (RasGRP1) contribute to dynamics of Erk activation in mature T cells is not yet known. Here, we have assessed this issue using stimuli inducing either transient or sustained TCR signaling and RNA interference mediated suppression of Sos1, Sos2, and RasGRP1 expression in primary human T cells. We found that transient Erk activation depends on RasGRP1 but not on Sos. Conversely, sustained Erk signaling and T-cell activation depend on both Sos1 and RasGRP1. In summary, our data show for the first time that the two guanine nucleotide exchange factors expressed in T cells are differentially involved in the regulation of the duration of Erk phosphorylation and T-cell activation.
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