Regulation mechanisms of CARMA1–Bcl10–MALT1 complex assembly inferred from the analysis of TRAF6‐deficient cells

Author:

Inoue Kentaro1,Yasuda Tomoharu2,Baba Yoshihiro3,Yamamoto Tadashi4,Kurosaki Tomohiro56,Shinohara Hisaaki7ORCID

Affiliation:

1. Faculty of Engineering University of Miyazaki Miyazaki Japan

2. Department of Immunology, Graduate School of Biomedical and Health Sciences Hiroshima University Hiroshima Japan

3. Division of Immunology and Genome Biology, Medical Institute of Bioregulation Kyushu University Fukuoka Japan

4. Cell Signal Unit Okinawa Institute of Science and Technology Okinawa Japan

5. Laboratory of Lymphocyte Differentiation, WPI Immunology Frontier Research Center Osaka University Osaka Japan

6. Laboratory for Lymphocyte Differentiation Center for Integrative Medical Sciences, RIKEN Tsurumi‐ku Japan

7. Laboratory for Systems Immunology, Faculty of Pharmaceutical Sciences Sanyo‐Onoda City University Yamaguchi Japan

Abstract

AbstractThe CARMA1–Bcl10–MALT1 (CBM) signalosome is a crucial module of NF‐κB activation in B cell receptor (BCR) signaling. Biophysical studies have shown that the E3 ubiquitin ligase TRAF6 cooperatively modifies the CBM signalosome; however, the specific details regarding how TRAF6 is involved in BCR signal‐induced CBM formation remain unclear. In this study, we aimed to reveal the influences of TRAF6 on CBM formation and TAK1 and IKK activities using DT40 B cells which lack all the exons of TRAF6. In TRAF6‐null cells we found: (i) attenuation of TAK1 activity and abolishment of IKK activity and (ii) sustained binding of CARMA1 to Bcl10. To account for the molecular mechanism causing these dynamics, we performed a mathematical model analysis. The mathematical model analysis showed that the regulation of IKK activation by TRAF6 can reproduce TAK1 and IKK activities in TRAF6 null cells, and that the TRAF6 related signal‐dependent inhibitor suppresses CARMA1 binding to Bcl10 in wild‐type cells. These results suggest that TRAF6 contributes to the positive regulation of IKK activation via TAK1, alongside the negative signal‐dependent regulation of CARMA1 binding to Bcl10.

Publisher

Wiley

Subject

Cell Biology,Genetics

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