T-BET and EOMES Accelerate and Enhance Functional Differentiation of Human Natural Killer Cells

Front Immunol. 2021 Sep 24:12:732511. doi: 10.3389/fimmu.2021.732511. eCollection 2021.

Abstract

T-bet and Eomes are transcription factors that are known to be important in maturation and function of murine natural killer (NK) cells. Reduced T-BET and EOMES expression results in dysfunctional NK cells and failure to control tumor growth. In contrast to mice, the current knowledge on the role of T-BET and EOMES in human NK cells is rudimentary. Here, we ectopically expressed either T-BET or EOMES in human hematopoietic progenitor cells. Combined transcriptome, chromatin accessibility and protein expression analyses revealed that T-BET or EOMES epigenetically represses hematopoietic stem cell quiescence and non-NK lineage differentiation genes, while activating an NK cell-specific transcriptome and thereby drastically accelerating NK cell differentiation. In this model, the effects of T-BET and EOMES are largely overlapping, yet EOMES shows a superior role in early NK cell maturation and induces faster NK receptor and enhanced CD16 expression. T-BET particularly controls transcription of terminal maturation markers and epigenetically controls strong induction of KIR expression. Finally, NK cells generated upon T-BET or EOMES overexpression display improved functionality, including increased IFN-γ production and killing, and especially EOMES overexpression NK cells have enhanced antibody-dependent cellular cytotoxicity. Our findings reveal novel insights on the regulatory role of T-BET and EOMES in human NK cell maturation and function, which is essential to further understand human NK cell biology and to optimize adoptive NK cell therapies.

Keywords: CD16 expression; EOMES; NK cell biology; NK cell therapy; T-BET; antibody-dependent cellular cytotoxicity; human NK cells; transcription factors.

Publication types

  • Comparative Study
  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Antibody-Dependent Cell Cytotoxicity
  • Cell Differentiation*
  • Cell Lineage
  • Chromatin Assembly and Disassembly
  • Coculture Techniques
  • Epigenesis, Genetic
  • Fetal Blood / cytology
  • GPI-Linked Proteins / genetics
  • GPI-Linked Proteins / metabolism
  • Hematopoietic Stem Cells / immunology
  • Hematopoietic Stem Cells / metabolism*
  • Humans
  • Interferon-gamma / metabolism
  • K562 Cells
  • Killer Cells, Natural / immunology
  • Killer Cells, Natural / metabolism*
  • Mice
  • Phenotype
  • Receptors, IgG / genetics
  • Receptors, IgG / metabolism
  • Receptors, KIR / genetics
  • Receptors, KIR / metabolism
  • T-Box Domain Proteins / genetics
  • T-Box Domain Proteins / metabolism*
  • Transcriptome

Substances

  • EOMES protein, human
  • FCGR3B protein, human
  • GPI-Linked Proteins
  • IFNG protein, human
  • Receptors, IgG
  • Receptors, KIR
  • T-Box Domain Proteins
  • T-box transcription factor TBX21
  • Interferon-gamma