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Published on: December 23, 2010
LUBAC modulates CBM complex functions downstream of TRAF6 in T cells
Carina Graß1, Franziska Ober1, Constanze Sixt1
1Signaling and Immunity, Research Unit Signaling and Translation, Molecular Targets and Therapeutics Center, Helmholtz Munich - German Research Center for Environmental Health, Neuherberg, Germany.
Insights
Linear ubiquitin chain assembly complex (LUBAC) and TRAF6 regulate T cell receptor signaling. LUBAC, while not essential for NF-κB activation, modulates MALT1 substrate recognition and BCL10 ubiquitination, impacting T cell responses.
Area of Science:
- Immunology
- Molecular Biology
- Cell Signaling
Background:
- The CARD11-BCL10-MALT1 (CBM) complex is crucial for T cell receptor (TCR) signaling and NF-κB activation.
- Both the linear ubiquitin chain assembly complex (LUBAC) and TRAF6 interact with the CBM complex, but their coordinated roles are unclear.
Purpose of the Study:
- To elucidate the distinct and coordinated roles of LUBAC and TRAF6 in regulating CBM complex activity following TCR stimulation.
- To investigate how these E3 ligases influence NF-κB signaling, MALT1 protease activity, and downstream T cell responses.
Main Methods:
- Utilized human CD4+ T cells to assess TCR-induced NF-κB activation.
- Investigated the impact of LUBAC and TRAF6 on NF-κB target gene expression.
- Analyzed MALT1 substrate recognition and BCL10 ubiquitination in response to LUBAC and TRAF6 activity.
- Examined the structural consequences of BCL10 ubiquitination on CBM complex filament formation.
Main Results:
- LUBAC is largely dispensable for TCR-induced NF-κB activation in human CD4+ T cells, unlike TRAF6.
- HOIP, a component of LUBAC, contributes to NF-κB target gene expression.
- LUBAC and TRAF6 collaboratively modulate MALT1 substrate recognition, affecting T cell responses.
- LUBAC-mediated Met1-linked ubiquitination of BCL10 is TRAF6-dependent.
- Ubiquitination sites on BCL10 are structurally important, limiting filament formation and suggesting LUBAC acts downstream of TRAF6.
Conclusions:
- LUBAC plays a regulatory role downstream of TRAF6 in TCR signaling, modulating MALT1 activity and BCL10 ubiquitination.
- LUBAC-catalyzed BCL10 ubiquitination inhibits CBM complex filament formation, providing a mechanism to control signaling duration and intensity.
- These findings clarify the distinct contributions of LUBAC and TRAF6 to adaptive immunity signaling pathways.
Abstract:
The CARD11-BCL10-MALT1 (CBM) complex drives NF-κB signaling and MALT1 protease activation after T cell receptor (TCR) stimulation, forming a central signaling hub in adaptive immunity. Both linear ubiquitin chain assembly complex (LUBAC), consisting of HOIP, HOIL-1 and SHARPIN, and TRAF6 interact with the CBM complex. Still, the coordinated activity of these E3 ligases in controlling CBM activity remains elusive. Here we demonstrate that LUBAC, unlike TRAF6, is largely dispensable for TCR-induced NF-κB activation in human CD4+ T cells. However, HOIP contributes to NF-κB target gene expression and, with TRAF6, modulates MALT1 substrate recognition, influencing T cell responses. Further, LUBAC-mediated conjugation of Met1-linked ubiquitin chains to BCL10 strictly depends on TRAF6, but putative Met1-ubiquitin acceptor lysines in BCL10 serve essential structural roles that limit accessibility within BCL10-MALT1 filaments. Thus, LUBAC acts downstream of TRAF6 to modulate MALT1 substrate recognition and to catalyze BCL10 ubiquitination, which is incompatible with BCL10-MALT1 filament formation.
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