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Published on: January 7, 2019
A Mesenchymal Tumor Cell State Confers Increased Dependency on the BCL-XL Antiapoptotic Protein in Kidney Cancer
Treg Grubb1,2, Smruthi Maganti1,2, John Michael Krill-Burger3
1Department of Cancer Biology, Lerner Research Institute, Cleveland Clinic, Cleveland, Ohio.
Purpose:
Advanced/metastatic forms of clear-cell renal cell carcinomas (ccRCC) have limited therapeutic options. Genome-wide genetic screens have identified cellular dependencies in many cancers. Using the Broad Institute/Novartis combined short hairpin RNA (shRNA) dataset, and cross-validation with the CRISPR/Cas9 DepMap (21Q3) dataset, we sought therapeutically actionable dependencies in kidney lineage cancers.
Experimental Design:
We identified preferential genetic dependencies in kidney cancer cells versus other lineages. BCL2L1, which encodes the BCL-XL antiapoptotic protein, scored as the top actionable dependency. We validated this finding using genetic and pharmacologic tools in a panel of ccRCC cell lines. Select BCL-XL-dependent (versus independent) cell lines were then transcriptionally profiled to identify biomarkers and mechanistic drivers of BCL-XL dependence. Cell-based studies (in vitro and in vivo) and clinical validations were used to address physiologic relevance.
Results:
Inactivation of BCL-XL, but not BCL-2, led to fitness defects in renal cancer cells, and sensitized them to chemotherapeutics. Transcriptomic profiling identified a "BCL-XL dependency" signature, including an elevated mesenchymal gene signature. A mesenchymal state was both necessary and sufficient to confer increased BCL-XL dependence. The "BCL-XL dependency" signature was observed in approximately 30% of human ccRCCs, which were also associated with worse clinical outcomes. Finally, an orally bioavailable BCL-XL inhibitor, A-1331852, showed antitumor efficacy in vivo.
Conclusions:
Our studies uncovered an unexpected link between cell state and BCL-XL dependence in ccRCC. Therapeutic agents that specifically target BCL-XL are available. Our work justifies testing the utility of BCL-XL blockade to target, likely, a clinically aggressive subset of human kidney cancers. See related commentary by Wang et al., p. 4600.
Insights
Clear-cell renal cell carcinoma (ccRCC) cells show dependence on BCL-XL, particularly when in a mesenchymal state. Targeting BCL-XL offers a potential therapeutic strategy for aggressive kidney cancers.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Advanced clear-cell renal cell carcinoma (ccRCC) presents limited therapeutic avenues.
- Genome-wide genetic screens are instrumental in identifying cancer-specific cellular dependencies.
- This study aimed to uncover actionable dependencies in kidney cancers using shRNA and CRISPR/Cas9 datasets.
Discussion:
- BCL2L1, encoding BCL-XL, emerged as a top dependency in kidney cancer cells.
- BCL-XL dependence was validated using genetic and pharmacologic approaches in ccRCC cell lines.
- Transcriptomic profiling revealed a "BCL-XL dependency" signature linked to a mesenchymal state.
Key Insights:
- Inactivating BCL-XL, not BCL-2, impaired renal cancer cell fitness and sensitized them to chemotherapy.
- A mesenchymal cell state is necessary and sufficient for increased BCL-XL dependence.
- The "BCL-XL dependency" signature was found in ~30% of ccRCCs and correlated with poorer outcomes.
Outlook:
- An orally bioavailable BCL-XL inhibitor demonstrated in vivo antitumor efficacy.
- The findings suggest BCL-XL blockade as a therapeutic strategy for a subset of aggressive ccRCC.
- Further clinical investigation of BCL-XL inhibitors in ccRCC is warranted.
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