Gene expression variability across cells and species shapes innate immunity

Emily Stephenson, Muzlifah Haniffa, Sarah A. Teichmann, Xi Chen, Gosia Trynka, Giacomo Donati, Valentina Proserpio, Guy Naamati, Ricardo J. Miragaia, Tomás Gomes, Jong-Eun Park, Tzachi Hagai, Armita Nourmohammad, James Fletcher, Raghd Rostom, Natalia Kunowska, Johan Henriksson, Lara Bossini‐Castillo, Felipe A. Vieira Braga, Péter Végh, Ivanela Kondova, Mike Dennis, Michael Lässig
2018-10-23

SCID:  54.1/zzkc56aq
As the first line of defence against pathogens, cells mount an innate immune response, which varies widely from cell to cell. The response must be potent but carefully controlled to avoid self-damage. How these constraints have shaped the evolution of innate immunity remains poorly understood. Here we characterize the innate immune response's transcriptional divergence between species and variability in expression among cells. Using bulk and single-cell transcriptomics in fibroblasts and mononuclear phagocytes from different species, challenged with immune stimuli, we map the architecture of the innate immune response. Transcriptionally diverging genes, including those that encode cytokines and chemokines, vary across cells and have distinct promoter structures. Conversely, genes that are involved in the regulation of this response, such as those that encode transcription factors and kinases, are conserved between species and display low cell-to-cell variability in expression. We suggest that this expression pattern, which is observed across species and conditions, has evolved as a mechanism for fine-tuned regulation to achieve an effective but balanced response.
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2018-10-23
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Authors
Emily Stephenson
Muzlifah Haniffa
Sarah A. Teichmann
Xi Chen
Gosia Trynka
Giacomo Donati
Valentina Proserpio
Guy Naamati
Ricardo J. Miragaia
Tomás Gomes
Jong-Eun Park
Tzachi Hagai
Armita Nourmohammad
James Fletcher
Raghd Rostom
Natalia Kunowska
Johan Henriksson
Lara Bossini‐Castillo
Felipe A. Vieira Braga
Péter Végh
Ivanela Kondova
Mike Dennis
Michael Lässig
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