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.

Scientific Reports
|December 29, 2019
PubMed

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.

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