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Published on: September 15, 2023
Gene Expression Profiling Identifies Akt as a Target for Radiosensitization in Gastric Cancer Cells
Kyung Hwan Kim1, Han Sang Kim2,3, Sang Cheol Kim4
1Department of Radiation Oncology, Yonsei Cancer Center, Yonsei University College of Medicine, Seoul, South Korea.
Background:
Despite the important role of radiotherapy in cancer treatment, a subset of patients responds poorly to treatment majorly due to radioresistance. Particularly the role of radiotherapy has not been established in gastric cancer (GC). Herein, we aimed to identify a radiosensitivity gene signature and to discover relevant targets to enhance radiosensitivity in GC cells.
Methods:
An oligonucleotide microarray (containing 22,740 probes) was performed in 12 GC cell lines prior to radiation. A clonogenic assay was performed to evaluate the survival fraction at 2 Gy (SF2) as a surrogate marker for radiosensitivity. Genes differentially expressed (fold change > 6, q-value < 0.025) were identified between radiosensitive and radioresistant cell lines, and quantitative reverse transcriptase-polymerase chain reaction (qRT-PCR) was performed for validation. Gene set and pathway analyses were performed using Ingenuity Pathway Analysis (IPA).
Results:
Radiosensitive (SF2 < 0.4) and radioresistant cell lines (SF2 ≥ 0.6) exhibited a marked difference in gene expression. We identified 68 genes that are differentially expressed between radiosensitive and radioresistant cell lines. The identified genes showed interactions via AKT, HIF1A, TGFB1, and TP53, and their functions were associated with the genetic networks associated with cellular growth and proliferation, cellular movement, and cell cycle. The Akt signaling pathway exhibited the highest association with radiosensitivity. Combinatorial treatment with MK-2206, an allosteric Akt inhibitor, and radiotherapy significantly increased cell death compared with radiotherapy alone in two radioresistant cell lines (YCC-2 and YCC-16).
Conclusion:
We identified a GC-specific radiosensitivity gene signature and suggest that the Akt signaling pathway could serve as a therapeutic target for GC radiosensitization.
Insights
Researchers identified a gastric cancer (GC) radiosensitivity gene signature. Targeting the Akt signaling pathway may enhance radiosensitivity in GC cells, improving radiotherapy outcomes.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Radiotherapy is crucial for cancer treatment, but radioresistance limits efficacy in a subset of patients.
- Gastric cancer (GC) radiosensitivity remains poorly understood, necessitating research into predictive biomarkers and therapeutic targets.
- Identifying factors influencing GC radiosensitivity is vital for improving treatment outcomes.
Purpose of the Study:
- To identify a gene signature predictive of radiosensitivity in gastric cancer (GC) cells.
- To discover novel therapeutic targets for enhancing GC radiosensitivity.
- To investigate the role of specific signaling pathways in GC radioresistance.
Main Methods:
- Oligonucleotide microarray analysis of 12 GC cell lines to identify differentially expressed genes.
- Clonogenic assays to determine radiosensitivity (SF2) and categorize cell lines.
- Quantitative reverse transcriptase-polymerase chain reaction (qRT-PCR) for gene expression validation.
- Gene set and pathway analysis using Ingenuity Pathway Analysis (IPA).
Main Results:
- A distinct gene expression profile differentiated radiosensitive and radioresistant GC cell lines.
- Sixty-eight differentially expressed genes were identified, interacting via AKT, HIF1A, TGFB1, and TP53.
- The Akt signaling pathway showed the strongest association with radiosensitivity.
- Combined treatment with an Akt inhibitor (MK-2206) and radiotherapy enhanced cancer cell death.
Conclusions:
- A specific gene signature for GC radiosensitivity was identified.
- The Akt signaling pathway is a promising therapeutic target for enhancing GC radiosensitization.
- Targeting the Akt pathway could improve the effectiveness of radiotherapy in gastric cancer treatment.
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