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Published on: September 1, 2019
Nuclear TRAF3 is a negative regulator of CREB in B cells
Nurbek Mambetsariev1, Wai W Lin2, Laura L Stunz3
1Department of Microbiology, University of Iowa, Iowa City, IA 52242; Immunology Graduate Program, University of Iowa, Iowa City, IA 52242; Medical Scientist Training Program, University of Iowa, Iowa City, IA 52242;
Abstract:
The adaptor protein TNF receptor-associated factor 3 (TRAF3) regulates signaling through B-lymphocyte receptors, including CD40, BAFF receptor, and Toll-like receptors, and also plays a critical role inhibiting B-cell homoeostatic survival. Consistent with these findings, loss-of-function human TRAF3 mutations are common in B-cell cancers, particularly multiple myeloma and B-cell lymphoma. B cells of B-cell-specific TRAF3(-/-) mice (B-Traf3(-/-)) display remarkably enhanced survival compared with littermate control (WT) B cells. The mechanism for this abnormal homeostatic survival is poorly understood, a key knowledge gap in selecting optimal treatments for human B-cell cancers with TRAF3 deficiency. We show here for the first time to our knowledge that TRAF3 is a resident nuclear protein that associates with the transcriptional regulator cAMP response element binding protein (CREB) in both mouse and human B cells. The TRAF-C domain of TRAF3 was necessary and sufficient to localize TRAF3 to the nucleus via a functional nuclear localization signal. CREB protein was elevated in TRAF3(-/-) B cells, without change in mRNA, but with a decrease in CREB ubiquitination. CREB-mediated transcriptional activity was increased in TRAF3-deficient B cells. Consistent with these findings, Mcl-1, an antiapoptotic target of CREB-mediated transcription, was increased in the absence of TRAF3 and enhanced Mcl-1 was suppressed with CREB inhibition. TRAF3-deficient B cells were also preferentially sensitive to survival inhibition with pharmacologic CREB inhibitor. Our results identify a new mechanism by which nuclear TRAF3 regulates B-cell survival via inhibition of CREB stability, information highly relevant to the role of TRAF3 in B-cell malignancies.
Insights
Tumor necrosis factor receptor-associated factor 3 (TRAF3) normally inhibits B-cell survival. Its absence increases the stability of CREB, a protein that promotes cell survival, leading to enhanced B-cell survival in cancers.
Area of Science:
- Immunology
- Molecular Biology
- Cancer Biology
Background:
- TNF receptor-associated factor 3 (TRAF3) is crucial for B-cell regulation and survival.
- TRAF3 mutations are linked to B-cell malignancies like multiple myeloma and lymphoma.
- TRAF3 deficiency in B cells leads to enhanced homeostatic survival, a mechanism poorly understood.
Purpose of the Study:
- To elucidate the mechanism behind TRAF3's role in regulating B-cell survival.
- To investigate the nuclear function of TRAF3 in B cells.
- To identify therapeutic targets for TRAF3-deficient B-cell cancers.
Main Methods:
- Localization studies to determine TRAF3's cellular compartment.
- Co-immunoprecipitation to identify TRAF3 interacting partners.
- Western blotting to assess protein levels and ubiquitination.
- Reporter assays to measure transcriptional activity.
- Pharmacological inhibition of CREB.
Main Results:
- TRAF3 is a nuclear protein that interacts with CREB in B cells.
- TRAF3 deficiency elevates CREB protein levels by reducing its ubiquitination and increasing transcriptional activity.
- The anti-apoptotic protein Mcl-1, a CREB target, is upregulated in TRAF3-deficient B cells.
- TRAF3-deficient B cells are sensitive to CREB inhibition.
Conclusions:
- Nuclear TRAF3 regulates B-cell survival by inhibiting CREB stability.
- This TRAF3-CREB axis is a critical pathway in B-cell homeostasis and malignancies.
- Targeting CREB may be a viable strategy for treating TRAF3-deficient B-cell cancers.
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