T cells translate individual, quantal activation into collective, analog cytokine responses via time-integrated feedbacks

Author:

Tkach Karen E12,Barik Debashis1,Voisinne Guillaume1,Malandro Nicole23,Hathorn Matthew M12,Cotari Jesse W12,Vogel Robert12,Merghoub Taha3,Wolchok Jedd3,Krichevsky Oleg4,Altan-Bonnet Grégoire12

Affiliation:

1. Program in Computational Biology and Immunology, Memorial Sloan Kettering Cancer Center, New York, United States

2. Graduate program, Weill Cornell Medical College, New York, United States

3. Immunology Program, Memorial Sloan Kettering Cancer Center, New York, United States

4. Physics Department, Ben Gurion University, Beer-Sheva, Israel

Abstract

Variability within isogenic T cell populations yields heterogeneous ‘local’ signaling responses to shared antigenic stimuli, but responding clones may communicate ‘global’ antigen load through paracrine messengers, such as cytokines. Such coordination of individual cell responses within multicellular populations is critical for accurate collective reactions to shared environmental cues. However, cytokine production may saturate as a function of antigen input, or be dominated by the precursor frequency of antigen-specific T cells. Surprisingly, we found that T cells scale their collective output of IL-2 to total antigen input over a large dynamic range, independently of population size. Through experimental quantitation and computational modeling, we demonstrate that this scaling is enforced by an inhibitory cross-talk between antigen and IL-2 signaling, and a nonlinear acceleration of IL-2 secretion per cell. Our study reveals how time-integration of these regulatory loops within individual cell signaling generates scaled collective responses and can be leveraged for immune monitoring.

Funder

National Institutes of Health

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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