Direct observation correlates NFκB cRel in B cells with activating and terminating their proliferative program

Author:

Vaidehi Narayanan Haripriya12ORCID,Xiang Mark Y.12,Chen Yijia12ORCID,Huang Helen12ORCID,Roy Sukanya3ORCID,Makkar Himani3ORCID,Hoffmann Alexander12ORCID,Roy Koushik3ORCID

Affiliation:

1. Signaling Systems Laboratory, Department of Microbiology, Immunology, and Molecular Genetics, University of California Los Angeles, Los Angeles, CA 90095

2. Institute for Quantitative and Computational Biosciences, University of California Los Angeles, Los Angeles, CA 90095

3. Division of Microbiology and Immunology, Department of Pathology, University of Utah, Salt Lake City, UT 84112

Abstract

Antibody responses require the proliferative expansion of B cells controlled by affinity-dependent signals. Yet, proliferative bursts are heterogeneous, varying between 0 and 8 divisions in response to the same stimulus. NFκB cRel is activated in response to immune stimulation in B cells and is genetically required for proliferation. Here, we asked whether proliferative heterogeneity is controlled by natural variations in cRel abundance. We developed a fluorescent reporter mTFP1-cRel for the direct observation of cRel in live proliferating B cells. We found that cRel is heterogeneously distributed among naïve B cells, which are enriched for high expressors in a heavy-tailed distribution. We found that high cRel expressors show faster activation of the proliferative program, but do not sustain it well, with population expansion decaying earlier. With a mathematical model of the molecular network, we showed that cRel heterogeneity arises from balancing positive feedback by autoregulation and negative feedback by its inhibitor IκBε, confirmed by mouse knockouts. Using live-cell fluorescence microscopy, we showed that increased cRel primes B cells for early proliferation via higher basal expression of the cell cycle driver cMyc. However, peak cMyc induction amplitude is constrained by incoherent feedforward regulation, decoding the fold change of cRel activity to terminate the proliferative burst. This results in a complex nonlinear, nonmonotonic relationship between cRel expression and the extent of proliferation. These findings emphasize the importance of direct observational studies to complement gene knockout results and to learn about quantitative relationships between biological processes and their key regulators in the context of natural variations.

Funder

HHS | NIH

Damon Runyon Cancer Research Foundation

James S. McDonnell Foundation

The University of Utah, Department of Pathology

American Society of Hematology

Publisher

Proceedings of the National Academy of Sciences

Reference51 articles.

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