Transcriptional basis of mouse and human dendritic cell heterogeneity Journal Article


Authors: Brown, C. C.; Gudjonson, H.; Pritykin, Y.; Deep, D.; Lavallée, V. P.; Mendoza, A.; Fromme, R.; Mazutis, L.; Ariyan, C.; Leslie, C.; Pe'er, D.; Rudensky, A. Y.
Article Title: Transcriptional basis of mouse and human dendritic cell heterogeneity
Abstract: Dendritic cells (DCs) play a critical role in orchestrating adaptive immune responses due to their unique ability to initiate T cell responses and direct their differentiation into effector lineages. Classical DCs have been divided into two subsets, cDC1 and cDC2, based on phenotypic markers and their distinct abilities to prime CD8 and CD4 T cells. While the transcriptional regulation of the cDC1 subset has been well characterized, cDC2 development and function remain poorly understood. By combining transcriptional and chromatin analyses with genetic reporter expression, we identified two principal cDC2 lineages defined by distinct developmental pathways and transcriptional regulators, including T-bet and RORγt, two key transcription factors known to define innate and adaptive lymphocyte subsets. These novel cDC2 lineages were characterized by distinct metabolic and functional programs. Extending our findings to humans revealed conserved DC heterogeneity and the presence of the newly defined cDC2 subsets in human cancer. © 2019 The Authors Single-cell analyses of dendritic cells reveals new subsets with distinct pro- and anti-inflammatory potential. © 2019 The Authors
Keywords: dendritic cells; transcriptional regulation; myeloid cells; t-bet; atac-sequencing; single-cell rna-sequencing
Journal Title: Cell
Volume: 179
Issue: 4
ISSN: 0092-8674
Publisher: Cell Press  
Date Published: 2019-10-31
Start Page: 846
End Page: 863.e24
Language: English
DOI: 10.1016/j.cell.2019.09.035
PROVIDER: scopus
PUBMED: 31668803
PMCID: PMC6838684
DOI/URL:
Notes: Article -- Export Date: 1 November 2019 -- Source: Scopus
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MSK Authors
  1. Charlotte Eielson Ariyan
    154 Ariyan
  2. Alexander Rudensky
    156 Rudensky
  3. Christina Leslie
    188 Leslie
  4. Dana Pe'er
    110 Pe'er
  5. Linas Mazutis
    34 Mazutis
  6. Rachel Fromme
    3 Fromme
  7. Chrysothemis Celia Margaret Brown
    17 Brown
  8. Deeksha Deep
    4 Deep