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Published on: November 2, 2018
Multiple p21ras effector pathways regulate nuclear factor of activated T cells
E Genot1, S Cleverley, S Henning
1Lymphocyte Activation Laboratory, Imperial Cancer Research Fund, 44 Lincoln's Inn Fields, London WC2A 3PX, UK.
Abstract:
The transcription factor, Nuclear Factor of Activated T cells (NFAT) is a major target for p21ras and calcium signalling pathways in the IL-2 gene and is induced by p21ras signals acting in synergy with calcium/calcineurin signals. One p21ras effector pathway involves the MAP kinase ERK-2, and we have examined its role in NFAT regulation. Expression of dominant negative MAPKK-1 prevents NFAT induction. Constitutively active MAPKK-1 fully activates ERK-2 and the transcription factor Elk-1, but does not substitute for activated p21ras and synergize with calcium/calcineurin signals to induce NFAT. Expression of dominant negative N17Rac also prevents TCR and p21ras activation of NFAT, but without interfering with the ERK-2 pathway. The transcriptional activity of the NFAT binding site is mediated by a complex comprising a member of the NFAT group and AP-1 family proteins. The induction of AP-1 by p21ras also requires Rac-1 function. Activated Rac-1 could mimic activated p21ras to induce AP-1 but not to induce NFAT. Moreover, the combination of activated MAPKK-1 and Rac-1 could not substitute for activated p21ras and synergize with calcium signals to induce NFAT. Thus, p21ras regulation of NFAT in T cells requires the activity of multiple effector pathways including those regulated by MAPKK-1/ERK-2 and Rac-1.
Insights
p21ras and calcium signals regulate Nuclear Factor of Activated T cells (NFAT) in T cells. This regulation requires both MAP kinase ERK-2 and Rac-1 pathways, highlighting multiple effector pathways for NFAT induction.
Area of Science:
- Molecular Biology
- Immunology
- Cell Signaling
Background:
- Nuclear Factor of Activated T cells (NFAT) is crucial for IL-2 gene expression.
- NFAT induction is regulated by p21ras and calcium signaling pathways.
Purpose of the Study:
- To investigate the role of the MAP kinase ERK-2 pathway in NFAT regulation.
- To elucidate the involvement of Rac-1 in p21ras-mediated NFAT induction.
Main Methods:
- Utilized dominant-negative and constitutively active forms of MAPKK-1 and Rac-1.
- Examined the effects on NFAT induction, ERK-2 activation, and AP-1 complex formation.
Main Results:
- Dominant-negative MAPKK-1 inhibited NFAT induction.
- Constitutively active MAPKK-1 activated ERK-2 and Elk-1 but did not fully induce NFAT.
- Dominant-negative N17Rac blocked TCR and p21ras activation of NFAT without affecting ERK-2.
- Activated Rac-1 induced AP-1 but not NFAT.
- Combined MAPKK-1 and Rac-1 activation could not substitute for p21ras in NFAT induction.
Conclusions:
- p21ras regulation of NFAT in T cells depends on multiple effector pathways.
- Both MAPKK-1/ERK-2 and Rac-1 pathways are essential for p21ras-mediated NFAT induction.
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