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Myeloid Innate Signaling Pathway Regulation by MALT1 Paracaspase Activity
Published on: January 7, 2019
Coordinated regulation of scaffold opening and enzymatic activity during CARD11 signaling
Zhaoquan Wang1, Shelby M Hutcherson1, Chao Yang1
1Department of Biological Chemistry and Institute for Cell Engineering, The Johns Hopkins University School of Medicine, Baltimore, Maryland 21205.
Insights
Inducible Element 1 (IE1) controls CARD11 scaffold opening and cofactor enzymatic activity, crucial for lymphocyte activation and preventing immune disorders and cancers.
Area of Science:
- Immunology
- Molecular Biology
- Cell Signaling
Background:
- Lymphocyte activation relies on signaling pathways downstream of antigen receptors.
- CARD11 is a key scaffold protein in antigen receptor signaling, essential for NF-κB, JNK, and mTOR activation.
- CARD11 mutations cause primary immunodeficiencies and drive lymphoid cancers.
Purpose of the Study:
- To investigate the role of Inducible Element 1 (IE1) in the CARD11 signaling cycle.
- To understand how signal-induced CARD11 conversion occurs.
- To elucidate the mechanism of CARD11 scaffold opening and cofactor recruitment.
Main Methods:
- Investigated the function of Inducible Element 1 (IE1) within the CARD11 Inhibitory Domain.
- Analyzed CARD11 signaling transitions from inactive to active states.
- Examined the recruitment and activation of cofactors like Bcl10, MALT1, and HOIP.
Main Results:
- IE1 regulates the signal-dependent opening of CARD11, enabling cofactor binding.
- IE1 is essential for the maximal enzymatic activation of HOIP and MALT1 post-recruitment.
- Identified distinct Cofactor Association and Enzymatic Activation steps in the CARD11 signaling cycle.
Conclusions:
- CARD11 actively coordinates scaffold opening and cofactor enzymatic activity during signaling.
- IE1 plays a dual role in initiating and amplifying CARD11-mediated signaling.
- Understanding IE1's function provides insights into lymphocyte activation and related diseases.
Abstract:
The activation of key signaling pathways downstream of antigen receptor engagement is critically required for normal lymphocyte activation during the adaptive immune response. CARD11 is a multidomain signaling scaffold protein required for antigen receptor signaling to NF-κB, c-Jun N-terminal kinase, and mTOR. Germline mutations in the CARD11 gene result in at least four types of primary immunodeficiency, and somatic CARD11 gain-of-function mutations drive constitutive NF-κB activity in diffuse large B cell lymphoma and other lymphoid cancers. In response to antigen receptor triggering, CARD11 transitions from a closed, inactive state to an open, active scaffold that recruits multiple signaling partners into a complex to relay downstream signaling. However, how this signal-induced CARD11 conversion occurs remains poorly understood. Here we investigate the role of Inducible Element 1 (IE1), a short regulatory element in the CARD11 Inhibitory Domain, in the CARD11 signaling cycle. We find that IE1 controls the signal-dependent Opening Step that makes CARD11 accessible to the binding of cofactors, including Bcl10, MALT1, and the HOIP catalytic subunit of the linear ubiquitin chain assembly complex. Surprisingly, we find that IE1 is also required at an independent step for the maximal activation of HOIP and MALT1 enzymatic activity after cofactor recruitment to CARD11. This role of IE1 reveals that there is an Enzymatic Activation Step in the CARD11 signaling cycle that is distinct from the Cofactor Association Step. Our results indicate that CARD11 has evolved to actively coordinate scaffold opening and the induction of enzymatic activity among recruited cofactors during antigen receptor signaling.
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