Perturbomics of tumor-infiltrating NK cells

Insights

Natural killer (NK) cell therapy shows promise but faces limitations. This study maps NK cell genes in tumors, identifying CALHM2 as a target to enhance NK cell function and cancer immunotherapy efficacy.

Area of Science:

  • Immunology
  • Cancer Biology
  • Genetics

Background:

  • Natural killer (NK) cells are crucial innate immune cells for defense against pathogens and cancer.
  • Current NK cell therapies for cancer are limited by effector function, persistence, and tumor infiltration.
  • Understanding the genetic factors influencing NK cell behavior in the tumor microenvironment (TME) is vital for improving immunotherapies.

Approach:

  • Utilized joint in vivo AAV-CRISPR screens and single-cell sequencing to map the functional genetic landscape of tumor-infiltrating NK cells.
  • Performed AAV-SleepingBeauty(SB)-CRISPR screens targeting cell surface genes across mouse models of melanoma, breast cancer, pancreatic cancer, and glioblastoma.
  • Characterized single-cell transcriptomic landscapes to identify novel NK cell subpopulations and gene expression changes within the TME.

Key Points:

  • Identified distinct NK cell subpopulations and a shift from immature to mature NK (mNK) cells in the TME, with decreased mature marker gene expression.
  • Discovered CALHM2, a calcium homeostasis modulator, through both screening and single-cell analyses, showing efficacy enhancement in chimeric antigen receptor (CAR)-NK cells.
  • CALHM2 perturbation was shown to modulate cytokine production, cell adhesion, and signaling pathways in CAR-NK cells.

Conclusions:

  • Systematically mapped endogenous factors limiting NK cell function within the TME.
  • Provided a comprehensive resource of genetic checkpoints for engineering enhanced NK cell-based immunotherapies.
  • Highlighted CALHM2 as a promising target for improving NK cell therapy efficacy against cancer.

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