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Updated: Jan 16, 2026

Cell Surface Receptor Identification Using Genome-Scale CRISPR/Cas9 Genetic Screens
Published on: June 6, 2020
Surfaceome CRISPR activation screening uncovers ligands regulating tumor sensitivity to NK cell killing
Abstract:
Natural killer (NK) cell-based immunotherapies represent a promising avenue for cancer treatment due to their ability to eliminate cancer cells independently of antigen presentation and potential for "off-the-shelf" use. However, the molecular determinants governing tumor cell susceptibility to NK cell-mediated cytotoxicity remain incompletely understood. Here we employed CRISPR activation (CRISPRa) screening to systematically identify cancer cell surface regulators of NK cell killing across multiple cancer types. Using a comprehensive surfaceome-focused library, we screened human and murine cancer cell lines co-cultured with NK cells, identifying both known and novel ligands that modulate NK cell cytotoxicity. Our screens revealed established factors including CD43 (encoded by SPN ), while uncovering previously uncharacterized regulators such as CD44, PDPN, and Siglec-1/CD169. Validation through complementary cDNA overexpression and genetic knockout approaches confirmed that disruption of CD43, CD44, PDPN, and Siglec-1 significantly altered cancer cell susceptibility to NK killing both in vitro and in humanized mouse models. Analysis of clinical datasets show that expression of identified factors correlates with patient survival outcomes in an NK-context dependent manner supporting their therapeutic relevance. Most notably, our mechanistic studies demonstrate that CD43-mediated NK cell resistance operates independently of its previously proposed interaction with Siglec-7 on NK cells. Furthermore, we find that targeting CD43 on either NK cells or engineered T cells substantially enhances their cytotoxic activity against leukemia cell lines. These results establish gain-of-function screening as a powerful approach for discovering immunoregulatory surface proteins and identify multiple promising targets for enhancing NK cell-based cancer immunotherapies.
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.
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