4.8 Article

Inhibitory CD161 receptor identified in glioma-infiltrating T cells by single-cell analysis

期刊

CELL
卷 184, 期 5, 页码 1281-+

出版社

CELL PRESS
DOI: 10.1016/j.cell.2021.01.022

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资金

  1. Ben and Catherine Ivy Foundation
  2. Bridge Project
  3. Koch Institute for Integrative Cancer Research at MIT
  4. DanaFarber/Harvard Cancer Center
  5. NIH [R01CA227821, P50CA165962]
  6. Ambrose Monell Foundation
  7. MGH Research Scholars
  8. Sontag Foundation
  9. Zuckerman STEM Leadership Program
  10. Human Frontier Science Program
  11. Mexican Friends New Generation
  12. Benoziyo Endowment Fund for the Advancement of Science
  13. Parker Institute for Cancer Immunotherapy (PICI)
  14. American Cancer Society [PF-17-042-01-LIB]
  15. NIH education loan repayment program - NCI [L30 CA231679-01]
  16. Deutsche Forschungsgemeinschaft (DFG) [GR 5252/1-1]
  17. Burroughs Wellcome Fund
  18. Cancer Research Institute (CRI) Lloyd J. Old STAR award
  19. Innovative Genomics Institute (IGI)
  20. Howard Hughes Medical Institute
  21. Klarman Cell Observatory, NCI [1U24CA180922, R33CA202820, P30-CA14051]
  22. National Cancer Institute
  23. Ludwig Center at MIT
  24. National Science Foundation Graduate Research Fellowship [DGE1745303]
  25. Burroughs Wellcome Fund (BWF)
  26. Wendy Schmidt postdoctoral program
  27. K12 award [CA090354]
  28. Loglio Foundation
  29. Japan Society for the Promotion of Science, SENSHIN Medical Research Foundation
  30. Kanae Foundation for the Promotion of Medical Science

向作者/读者索取更多资源

This study utilized single-cell RNA sequencing to uncover the gene expression and clonal landscape of T cells in diffuse gliomas, identifying potential effectors of anti-tumor immunity. The research revealed that KLRB1 and its associated transcriptional program play an inhibitory role in tumor immunity, and blocking its function enhances T cell killing of glioma cells.
T cells are critical effectors of cancer immunotherapies, but little is known about their gene expression programs in diffuse gliomas. Here, we leverage single-cell RNA sequencing (RNA-seq) to chart the gene expression and clonal landscape of tumor-infiltrating T cells across 31 patients with isocitrate dehydrogenase (IDH) wild-type glioblastoma and IDH mutant glioma. We identify potential effectors of anti-tumor immunity in subsets of T cells that co-express cytotoxic programs and several natural killer (NK) cell genes. Analysis of clonally expanded tumor-infiltrating T cells further identifies the NK gene KLRB1 (encoding CD161) as a candidate inhibitory receptor. Accordingly, genetic inactivation of KLRB1 or antibody-mediated CD161 blockade enhances T cell-mediated killing of glioma cells in vitro and their anti-tumor function in vivo. KLRB1 and its associated transcriptional program are also expressed by substantial T cell populations in other human cancers. Our work provides an atlas of T cells in gliomas and highlights CD161 and other NK cell receptors as immunotherapy targets.

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