bioRxiv · 10.1101/478529
Deciphering the Regulatory Landscape of γδ T Cell Development by Single-Cell RNA-Sequencing
Abstract
Recent studies have established{gamma}{delta} T cells as critical players in a broad range of infections, antitumor surveillance, autoimmune diseases and tissue homeostasis. However, differentiation of{gamma}{delta} T cells in the adult thymus remains poorly understood, due to the rare frequency of this lineage. Here, we infer high-resolution developmental trajectories of this rare population by single-cell RNA-sequencing. We reveal previously unknown subtypes and identify the transcription factor c-MAF as a novel key regulator of IL-17-producing{gamma}{delta} T cell ({gamma}{delta}T17) differentiation. c-MAF knockout mice exhibit a complete block in{gamma}{delta} T17 differentiation, absence of these cells from peripheral organs, and protection from an autoimmune phenotype in a psoriasis model. Single-cell RNA-sequencing of Sox13 and Rorc knockout mice pinpoints c-MAF as an essential missing link between these lineage-specifying factors. These findings significantly enhance our understanding of{gamma}{delta} T cell ontogeny. Our experimental strategy provides a blueprint for deciphering differentiation of rare cell types.
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Sagar, S., Pokrovskii, M., Herman, J. S., Naik, S., Sock, E., Lausch, U., Wegner, M., Tanriver, Y., Littman, D. R., Grün, D.. 2018-11-27. Deciphering the Regulatory Landscape of γδ T Cell Development by Single-Cell RNA-Sequencing. https://doi.org/10.1101/478529
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