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The B cell antigen receptor controls AP-1 and NFAT activity through Ras-mediated activation of Ral
David J J de Gorter1, Johanna C M Vos, Steven T Pals
1Department of Pathology, Academic Medical Center, University of Amsterdam, Amsterdam, The Netherlands.
Abstract:
Signaling by the BCR involves activation of several members of the Ras superfamily of small GTPases, among which is Ras itself. Ras can control the activity of multiple effectors, including Raf, PI3K, and guanine nucleotide exchange factors for the small GTPase Ral. Ras, Raf, and PI3K have been implicated in a variety of processes underlying B cell development, differentiation, and function; however, the role of Ral in B lymphocytes remains to be established. In this study, we show that Ral is activated upon BCR stimulation in human tonsillar and mouse splenic B lymphocytes and in B cell lines. Using signaling molecule-deficient B cells, we demonstrate that this activation is mediated by Lyn and Syk, Btk, phospholipase C-gamma2, and inositol-1,4,5-trisphosphate receptor-mediated Ca(2+) release. In addition, although Ral can be activated by Ras-independent mechanisms, we demonstrate that BCR-controlled activation of Ral is dependent on Ras. By means of expression of the dominant-negative mutants RasN17 and RalN28, or of RalBPDeltaGAP, a Ral effector mutant which sequesters active Ral, we show that Ras and Ral mediate BCR-controlled transcription of c-fos. Furthermore, while not involved in NF-kappaB activation, Ras and Ral mediate BCR-controlled activation of JUN/ATF2 and NFAT transcription factors. Taken together, our data show that Ral is activated upon BCR stimulation and mediates BCR-controlled activation of AP-1 and NFAT transcription factors. These findings suggest that Ral plays an important role in B cell development and function.
Insights
Ral GTPase is activated by B-cell receptor (BCR) stimulation and plays a key role in B cell function by controlling transcription factors like AP-1 and NFAT.
Area of Science:
- Immunology
- Cell signaling
- Molecular biology
Background:
- B-cell receptor (BCR) signaling activates Ras GTPases, including Ras.
- Ras influences effectors like Raf, PI3K, and Ral GTPase exchange factors.
- The specific role of Ral in B lymphocytes is not well understood.
Purpose of the Study:
- To investigate the activation and function of Ral in B lymphocytes upon BCR stimulation.
- To elucidate the signaling pathways controlling Ral activation.
- To determine the downstream targets and functional significance of Ral in BCR signaling.
Main Methods:
- Activation of Ral in human and mouse B cells and B cell lines upon BCR stimulation.
- Analysis of signaling pathways using deficient B cells (Lyn, Syk, Btk, PLCγ2).
- Investigation of Ras-Ral dependency using dominant-negative mutants (RasN17, RalN28) and Ral effector mutants (RalBPΔGAP).
Main Results:
- Ral is activated by BCR stimulation through Lyn, Syk, Btk, PLCγ2, and Ca2+ release.
- BCR-controlled Ral activation is dependent on Ras.
- Ras and Ral mediate BCR-controlled transcription of c-fos, JUN/ATF2, and NFAT, but not NF-κB.
Conclusions:
- Ral is activated downstream of BCR signaling.
- Ral mediates BCR-controlled activation of AP-1 and NFAT transcription factors.
- Ral plays a significant role in B cell development and function.
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