Anti-apoptotic protein BCL-XL as a therapeutic vulnerability in gastric cancer
Yumin Wei1,2,3, Liping Zhang1,2,3, Chao Wang1,2,3
1National Human Diseases Animal Model Resource Center, The Institute of Laboratory Animal Science, Chinese Academy of Medical Sciences & Peking Union Medical College, Beijing, China.
Background:
New therapeutic targets are needed to improve the outcomes for gastric cancer (GC) patients with advanced disease. Evasion of programmed cell death (apoptosis) is a hallmark of cancer cells and direct induction of apoptosis by targeting the pro-survival BCL2 family proteins represents a promising therapeutic strategy for cancer treatment. Therefore, understanding the molecular mechanisms underpinning cancer cell survival could provide a molecular basis for potential therapeutic interventions.
Method:
Here we explored the role of BCL2L1 and the encoded anti-apoptotic BCL-XL in GC. Using Droplet Digital PCR (ddPCR) technology to investigate the DNA amplification of BCL2L1 in GC samples and GC cell lines, the sensitivity of GC cell lines to selective BCL-XL inhibitors A1155463 and A1331852, pan-inhibitor ABT-263, and VHL-based PROTAC-BCL-XL was analyzed using (CellTiter-Glo) CTG assay in vitro. Western Blot (WB) was used to detect the protein expression of BCL2 family members in GC cell lines and the manner in which PROTAC-BCL-XL kills GC cells. Co-immunoprecipitation (Co-IP) was used to investigate the mechanism of A1331852 and ABT-263 kills GC cell lines. DDPCR, WB, and real-time PCR (RTPCR) were used to investigate the correlation between DNA, RNA, protein levels, and drug activity.
Results:
The functional assay showed that a subset of GC cell lines relies on BCL-XL for survival. In gastric cancer cell lines, BCL-XL inhibitors A1155463 and A1331852 are more sensitive than the pan BCL2 family inhibitor ABT-263, indicating that ABT-263 is not an optimal inhibitor of BCL-XL. VHL-based PROTAC-BCL-XL DT2216 appears to be active in GC cells. DT2216 induces apoptosis of gastric cancer cells in a time- and dose-dependent manner through the proteasome pathway. Statistical analysis showed that the BCL-XL protein level predicts the response of GC cells to BCL-XL targeting therapy and BCL2L1 gene CNVs do not reliably predict BCL-XL expression.
Conclusion:
We identified BCL-XL as a promising therapeutic target in a subset of GC cases with high levels of BCL-XL protein expression. Functionally, we demonstrated that both selective BCL-XL inhibitors and VHL-based PROTAC BCL-XL can potently kill GC cells that are reliant on BCL-XL for survival. However, we found that BCL2L1 copy number variations (CNVs) cannot reliably predict BCL-XL expression, but the BCL-XL protein level serves as a useful biomarker for predicting the sensitivity of GC cells to BCL-XL-targeting compounds. Taken together, our study pinpointed BCL-XL as potential druggable target for specific subsets of GC.
Insights
Gastric cancer (GC) cells can be targeted by inhibiting BCL-XL, a protein crucial for their survival. High BCL-XL protein levels, not gene copy number, predict treatment response, identifying BCL-XL as a promising therapeutic target in GC.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Advanced gastric cancer (GC) necessitates novel therapeutic strategies.
- Cancer cells evade apoptosis, a programmed cell death process.
- Targeting pro-survival BCL2 family proteins offers a promising therapeutic avenue for cancer treatment.
Purpose of the Study:
- To investigate the role of BCL2-like protein 1 (BCL2L1) and its encoded anti-apoptotic protein BCL-XL in gastric cancer.
- To evaluate the efficacy of BCL-XL inhibitors and a VHL-based PROTAC in preclinical GC models.
- To identify biomarkers predicting response to BCL-XL targeting therapies.
Main Methods:
- Droplet Digital PCR (ddPCR) to assess BCL2L1 DNA amplification.
- Cell viability assays (CellTiter-Glo) to determine sensitivity to BCL-XL inhibitors (A1155463, A1331852, ABT-263) and PROTAC-BCL-XL (DT2216).
- Western Blot (WB) and Co-immunoprecipitation (Co-IP) to analyze protein expression and interaction, and real-time PCR (RTPCR) for gene expression correlation.
Main Results:
- A subset of GC cell lines demonstrated reliance on BCL-XL for survival.
- Selective BCL-XL inhibitors showed higher sensitivity compared to the pan BCL2 inhibitor ABT-263.
- VHL-based PROTAC-BCL-XL (DT2216) effectively induced apoptosis in GC cells via the proteasome pathway.
Conclusions:
- BCL-XL is a viable therapeutic target in specific gastric cancer cases with high protein expression.
- BCL-XL protein levels, not BCL2L1 gene copy number variations (CNVs), serve as a reliable biomarker for predicting treatment response.
- Both selective inhibitors and PROTACs targeting BCL-XL show potential for treating subsets of GC patients.
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