Please use this identifier to cite or link to this item:
http://hdl.handle.net/123456789/585
Title: | A pathway switch directs BAFF signaling to distinct NFκB transcription factors in maturing and proliferating B cells |
Authors: | Hoffmann, Alexander Almaden, Jonathan V Tsui, Rachel Liu, Yi C Birnbaum, Harry Shokhirev, Maxim N Ngo, Kim A Davis-Turak, Jeremy C Otero, Dennis Basak, Soumen Rickert, Robert C |
Issue Date: | Dec-2014 |
Publisher: | Elsevier Inc. |
Abstract: | BAFF, an activator of the noncanonical NFκB pathway, provides critical survival signals during B cell maturation and contributes to B cell proliferation. We found that the NFκB family member RelB is required ex vivo for B cell maturation, but cRel is required for proliferation. Combined molecular network modeling and experimentation revealed Nfkb2 p100 as a pathway switch; at moderate p100 synthesis rates in maturing B cells, BAFF fully utilizes p100 to generate the RelB:p52 dimer, whereas at high synthesis rates, p100 assembles into multimeric IκBsome complexes, which BAFF neutralizes in order to potentiate cRel activity and B cell expansion. Indeed, moderation of p100 expression or disruption of IκBsome assembly circumvented the BAFF requirement for full B cell expansion. Our studies emphasize the importance of p100 in determining distinct NFκB network states during B cell biology, which causes BAFF to have context-dependent functional consequences. |
URI: | http://hdl.handle.net/123456789/585 |
Appears in Collections: | Systems Immunology, Publications |
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2014_Almaden et. al.pdf | 4.15 MB | Adobe PDF | View/Open Request a copy |
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