Surfaceome CRISPR activation screening uncovers ligands regulating tumor sensitivity to NK cell killing

Insights

This study identifies novel cancer cell surface proteins, including CD44 and Siglec-1, that regulate natural killer (NK) cell killing. Targeting these molecules, like CD43, enhances NK cell immunotherapies for cancer treatment.

Area of Science:

  • Immunology
  • Cancer Biology
  • Genetics

Background:

  • Natural killer (NK) cell immunotherapies offer a promising cancer treatment strategy due to their antigen-independent cancer cell killing and potential for allogeneic use.
  • Understanding the molecular mechanisms that dictate cancer cell sensitivity to NK cell-mediated cytotoxicity is crucial for optimizing these therapies.

Purpose of the Study:

  • To systematically identify cancer cell surface regulators of NK cell killing using CRISPR activation screening.
  • To discover novel targets for enhancing NK cell-based cancer immunotherapies.

Main Methods:

  • Utilized CRISPR activation (CRISPRa) screening with a surfaceome-focused library across human and murine cancer cell lines co-cultured with NK cells.
  • Validated findings through cDNA overexpression, genetic knockout, *in vitro* assays, humanized mouse models, and analysis of clinical datasets.
  • Investigated the mechanistic basis of CD43-mediated NK cell resistance and its therapeutic potential.

Main Results:

  • Identified known regulators like CD43 (SPN) and novel regulators including CD44, PDPN, and Siglec-1/CD169.
  • Disruption of CD43, CD44, PDPN, and Siglec-1 significantly altered cancer cell susceptibility to NK cell killing.
  • Expression of identified factors correlated with patient survival, supporting their therapeutic relevance.
  • Demonstrated CD43-mediated resistance is independent of Siglec-7 interaction and that targeting CD43 enhances cytotoxic activity against leukemia.

Conclusions:

  • CRISPRa screening is an effective approach for discovering immunoregulatory surface proteins.
  • Multiple identified surface proteins, including CD43, CD44, PDPN, and Siglec-1, represent promising therapeutic targets for enhancing NK cell immunotherapies.
  • Targeting CD43 shows potential for improving NK and engineered T cell-based cancer treatments, particularly for leukemia.