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Cell‐specific responses to the cytokine TGF β are determined by variability in protein levels
Author(s) -
Strasen Jette,
Sarma Uddipan,
Jentsch Marcel,
Bohn Stefan,
Sheng Caibin,
Horbelt Daniel,
Knaus Petra,
Legewie Stefan,
Loewer Alexander
Publication year - 2018
Publication title -
molecular systems biology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 8.523
H-Index - 148
ISSN - 1744-4292
DOI - 10.15252/msb.20177733
Subject(s) - biology , cytokine , transforming growth factor , microbiology and biotechnology , immunology
The cytokine TGF β provides important information during embryonic development, adult tissue homeostasis, and regeneration. Alterations in the cellular response to TGF β are involved in severe human diseases. To understand how cells encode the extracellular input and transmit its information to elicit appropriate responses, we acquired quantitative time‐resolved measurements of pathway activation at the single‐cell level. We established dynamic time warping to quantitatively compare signaling dynamics of thousands of individual cells and described heterogeneous single‐cell responses by mathematical modeling. Our combined experimental and theoretical study revealed that the response to a given dose of TGF β is determined cell specifically by the levels of defined signaling proteins. This heterogeneity in signaling protein expression leads to decomposition of cells into classes with qualitatively distinct signaling dynamics and phenotypic outcome. Negative feedback regulators promote heterogeneous signaling, as a SMAD 7 knock‐out specifically affected the signal duration in a subpopulation of cells. Taken together, we propose a quantitative framework that allows predicting and testing sources of cellular signaling heterogeneity.

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