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Updated: Jul 18, 2025

Analysis of Human T Cell Activity in an Allogeneic Co-Culture Setting of Pre-Treated Tumor Cells
Published on: March 7, 2025
BCL2 Inhibition Reveals a Dendritic Cell-Specific Immune Checkpoint That Controls Tumor Immunosurveillance
Liwei Zhao1,2, Peng Liu1,2, Misha Mao1,2,3,4
1Centre de Recherche des Cordeliers, Equipe Labellisée par la Ligue contre le Cancer, Université de Paris, Sorbonne Université, Inserm U1138, Institut Universitaire de France, Paris, France.
Abstract:
We developed a phenotypic screening platform for the functional exploration of dendritic cells (DC). Here, we report a genome-wide CRISPR screen that revealed BCL2 as an endogenous inhibitor of DC function. Knockout of BCL2 enhanced DC antigen presentation and activation as well as the capacity of DCs to control tumors and to synergize with PD-1 blockade. The pharmacologic BCL2 inhibitors venetoclax and navitoclax phenocopied these effects and caused a cDC1-dependent regression of orthotopic lung cancers and fibrosarcomas. Thus, solid tumors failed to respond to BCL2 inhibition in mice constitutively devoid of cDC1, and this was reversed by the infusion of DCs. Moreover, cDC1 depletion reduced the therapeutic efficacy of BCL2 inhibitors alone or in combination with PD-1 blockade and treatment with venetoclax caused cDC1 activation, both in mice and in patients. In conclusion, genetic and pharmacologic BCL2 inhibition unveils a DC-specific immune checkpoint that restrains tumor immunosurveillance.
Significance:
BCL2 inhibition improves the capacity of DCs to stimulate anticancer immunity and restrain cancer growth in an immunocompetent context but not in mice lacking cDC1 or mature T cells. This study indicates that BCL2 blockade can be used to sensitize solid cancers to PD-1/PD-L1-targeting immunotherapy. This article is featured in Selected Articles from This Issue, p. 2293.
Insights
Targeting BCL2 enhances dendritic cell (DC) function, improving anti-tumor immunity. BCL2 inhibition acts as a DC-specific immune checkpoint, sensitizing solid tumors to immunotherapy.
Area of Science:
- Immunology
- Cancer Biology
- Cellular Biology
Background:
- Dendritic cells (DCs) are crucial for initiating anti-tumor immune responses.
- BCL2 is identified as a key regulator of DC function.
Purpose of the Study:
- To investigate the role of BCL2 in DC function and anti-tumor immunity.
- To explore the therapeutic potential of BCL2 inhibition in cancer treatment.
Main Methods:
- Genome-wide CRISPR screen to identify regulators of DC function.
- Utilized pharmacologic BCL2 inhibitors (venetoclax, navitoclax).
- Assessed DC antigen presentation, activation, and tumor control in mouse models.
Main Results:
- BCL2 knockout enhanced DC antigen presentation, activation, and tumor control.
- Pharmacologic BCL2 inhibition mimicked these effects, leading to tumor regression.
- Therapeutic efficacy was dependent on CD103+ dendritic cells (cDC1) and T cells.
- BCL2 inhibition sensitized solid tumors to PD-1 blockade immunotherapy.
Conclusions:
- BCL2 acts as a DC-specific immune checkpoint.
- Targeting BCL2 enhances DC-mediated anti-tumor immunity.
- BCL2 inhibition is a promising strategy to sensitize solid tumors to immunotherapy.
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