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Updated: Jan 1, 2026

Performing an In Vitro Genome-Wide CRISPR Knockout Screen in Chimeric Antigen Receptor T Cells
Published on: January 31, 2025
Genome-scale CRISPR activation screen uncovers tumor-intrinsic modulators of CD3 bispecific antibody efficacy
Corinne E Decker1, Tara Young1, Elizabeth Pasnikowski1
1Regeneron Pharmaceuticals, Inc., Tarrytown, NY, 10591, United States.
Abstract:
Bispecific antibodies (bsAb) that bridge tumor cells and CD3-positive effector T cells are being developed against many tumor cell targets. While tumor cell factors other than target expression level appear to play a role in determining the efficacy of CD3 bsAb, the identity of such factors remains largely unknown. Using a co-culture system of primary human T cells and B lymphoma cell lines, we demonstrate a range of sensitivities to CD20xCD3 bsAb that is independent of CD20 surface expression. To identify genes that modulate tumor cell sensitivity to CD3 bsAb, we employed a genome-scale CRISPR activation screen in a CD20xCD3-sensitive human B lymphoma cell line. Among the most highly enriched sgRNAs were those targeting genes with predicted effects on cell-cell adhesion, including sialophorin (SPN). Increased expression of SPN impeded tumor cell clustering with T cells, thereby limiting CD3 bsAb-mediated tumor cell lysis. This inhibitory effect of SPN appeared to be dependent on sialylated core 2 O-glycosylation of the protein. While SPN is not endogenously expressed in the majority of B cell lymphomas, it is highly expressed in acute myeloid leukemia. CRISPR-mediated SPN knockout in AML cell lines facilitated T cell-tumor cell clustering and enhanced CD3 bsAb-mediated AML cell lysis. In sum, our data establish that the cell cross-linking mechanism of CD3 bsAb is susceptible to subversion by anti-adhesive molecules expressed on the tumor cell surface. Further evaluation of anti-adhesive pathways may provide novel biomarkers of clinical response and enable the development of effective combination regimens for this promising therapeutic class.
Insights
Bispecific antibodies (bsAb) efficacy is limited by tumor cell adhesion. Sialophorin (SPN) reduces T cell engagement, hindering bsAb therapy. Targeting SPN may improve treatment outcomes.
Area of Science:
- Immunology
- Oncology
- Molecular Biology
Background:
- Bispecific antibodies (bsAb) targeting CD3 and tumor antigens are promising cancer therapeutics.
- Factors beyond target expression influence CD3 bsAb efficacy, but remain largely unknown.
- Tumor cell surface molecules can modulate T cell-mediated cytotoxicity.
Purpose of the Study:
- To identify tumor cell factors that regulate sensitivity to CD3 bsAb.
- To investigate the role of cell adhesion molecules in CD3 bsAb therapy.
- To explore therapeutic strategies targeting identified modulatory factors.
Main Methods:
- Co-culture of primary human T cells and B lymphoma cell lines.
- Genome-scale CRISPR activation screen to identify sensitizing genes.
- Analysis of sialophorin (SPN) expression and function in lymphoma and leukemia models.
- CRISPR-mediated gene knockout and assessment of bsAb-mediated lysis.
Main Results:
- CD20xCD3 bsAb sensitivity varied independently of CD20 expression.
- Sialophorin (SPN) was identified as a key inhibitor of T cell-tumor cell clustering.
- SPN impeded CD3 bsAb-mediated lysis, dependent on its glycosylation.
- SPN knockout in AML cells enhanced T cell clustering and bsAb efficacy.
Conclusions:
- Tumor cell surface anti-adhesive molecules, like SPN, can subvert CD3 bsAb mechanisms.
- SPN expression represents a potential biomarker for CD3 bsAb response.
- Targeting anti-adhesive pathways may enhance bsAb therapy and combination regimens.

