Skip to Main Content

Paper Details

Metabolic heterogeneity underlies reciprocal fates of T<sub>H</sub>17 cell stemness and plasticity.
Nature
134
2019
CD27, CD4-positive, CD4-positive T-cell subsets, CD8-positive, CD8-positive T cells, Single, T-bet, TCF-1, TH1-like cells, TH17, TH17 cell, TH17 cells, TH17-cell, TH17-cell fate, TH17-cell subsets, autoimmune disease, autoimmune neuroinflammation, autoimmunity, chronic inflammatory conditions, helper T cells, long, long-lived memory T cells, mTORC1, mouse, stem, stem-like T-cell subset, stemness, tissue inflammation, transcription factors
Author NameAffiliation
Xiang ChenSt Jude Children's Research Hospital
Xiang ChenSt Jude Children's Research Hospital
John EastonSt Jude Children's Research Hospital
John EastonSt Jude Children's Research Hospital
Geoffrey NealeHartwell Center for Bioinformatics and Biotechnology, St Jude Children's Research Hospital
  • 1 - 5

Datasets