Identification and physiological significance of temporal NFκB signaling codewords deployed by macrophages to classify immune threats
Taylor, B.; Adelaja, A.; Liu, Y.; Luecke, S.; Hoffmann, A.
Show abstract
Acute and chronic inflammatory pathologies involve misregulation of macrophage functions. Physiologically, macrophages are immune sentinels that initiate inflammatory responses via the transcription factor NF{kappa}B. The temporal pattern of NF{kappa}B activity determines which genes are expressed, suggesting that a temporal signaling code specifies a stimulus-appropriate immune response. To identify the signaling codewords, we developed tools to enable high-throughput analysis of live, primary macrophages responding to host- and pathogen-derived stimuli. An information-theoretic workflow identified six dynamical features that constitute codewords that convey stimulus information to the nucleus. In particular, "oscillatory" trajectories are a hallmark of the responses to host cytokine TNF. Remarkably, examining macrophages derived from a systemic autoimmune disease model suggests that confusion of two NF{kappa}B signaling codewords, and thus miscoding of TNF as a pathogen-derived stimulus, may underlie sporadic inflammatory pathology. Overall, this study identifies six codewords of the temporal NF{kappa}B signaling code for classifying immune threats and demonstrates their biological significance.
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