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CD82 controls CpG-dependent TLR9 signaling.

Accepted version
Peer-reviewed

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Article

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Authors

Khan, Nida S 
Feliu, Marianela 
Ward, Rebecca A 
Lord, Allison K 

Abstract

The tetraspanin CD82 is a potent suppressor of tumor metastasis and regulates several processes including signal transduction, cell adhesion, motility, and aggregation. However, the mechanisms by which CD82 participates in innate immunity are unknown. We report that CD82 is a key regulator of TLR9 trafficking and signaling. TLR9 recognizes unmethylated cytosine-phosphate-guanine (CpG) motifs present in viral, bacterial, and fungal DNA. We demonstrate that TLR9 and CD82 associate in macrophages, which occurs in the endoplasmic reticulum (ER) and post-ER. Moreover, CD82 is essential for TLR9-dependent myddosome formation in response to CpG stimulation. Finally, CD82 modulates TLR9-dependent NF-κB nuclear translocation, which is critical for inflammatory cytokine production. To our knowledge, this is the first time a tetraspanin has been implicated as a key regulator of TLR signaling. Collectively, our study demonstrates that CD82 is a specific regulator of TLR9 signaling, which may be critical in cancer immunotherapy approaches and coordinating the innate immune response to pathogens.-Khan, N. S., Lukason, D. P., Feliu, M., Ward, R. A., Lord, A. K., Reedy, J. L., Ramirez-Ortiz, Z. G., Tam, J. M., Kasperkovitz, P. V., Negoro, P. E., Vyas, T. D., Xu, S., Brinkmann, M. M., Acharaya, M., Artavanis-Tsakonas, K., Frickel, E.-M., Becker, C. E., Dagher, Z., Kim, Y.-M., Latz, E., Ploegh, H. L., Mansour, M. K., Miranti, C. K., Levitz, S. M., Vyas, J. M. CD82 controls CpG-dependent TLR9 signaling.

Description

Keywords

TLRs, macrophages, myddosome, tetraspanins, Active Transport, Cell Nucleus, Animals, Cell Nucleus, Cytokines, Endoplasmic Reticulum, Inflammation, Kangai-1 Protein, Macrophages, Mice, Mice, Knockout, NF-kappa B, Oligodeoxyribonucleotides, RAW 264.7 Cells, Signal Transduction, Toll-Like Receptor 9

Journal Title

FASEB J

Conference Name

Journal ISSN

0892-6638
1530-6860

Volume Title

33

Publisher

Wiley

Rights

All rights reserved
Sponsorship
This work was supported by U.S. National Institutes of Health, National Institute of Allergy and Infectious Diseases Grants R01 AI092084 and R01 AI097519 (to J.M.V.) and R01 AI025780 and R01 AI139615 (to S.M.L.). This work was also supported by the Francis Crick Institute, which receives its core funding from Cancer Research UK (FC001076), the UK Medical Research Council (FC001076), and the Wellcome Trust (FC001076).