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Published on: August 25, 2023
Combined functional genome survey of therapeutic targets for hepatocellular carcinoma
Reiko Satow1, Miki Shitashige, Yae Kanai
1Chemotherapy Division, National Cancer Center Research Institute, Tokyo, Japan.
Purpose:
The outcome of patients with advanced hepatocellular carcinoma (HCC) has remained unsatisfactory. Patients with HCC suffer from chronic hepatitis or liver cirrhosis, and their reserve liver function is often limited.
Experimental Design:
To develop new therapeutic agents that act specifically on HCC but interfere only minimally with residual liver function, we searched for genes that were upregulated in 20 cases of HCC [namely, discovery sets 1 (n = 10) and 2 (n = 10)] in comparison with corresponding nontumorous liver and a panel representing normal organs using high-density microarrays capable of detecting all exons in the human genome.
Results:
Eleven transcripts whose expression was significantly increased in HCC were subjected to siRNA-based secondary screening of genes required for HCC cell proliferation as well as quantitative reverse transcription-PCR analysis [validation sets 1 (n = 20) and 2 (n = 44)] and immunohistochemistry (n = 19). We finally extracted four genes, AKR1B10, HCAP-G, RRM2, and TPX2, as candidate therapeutic targets for HCC. siRNA-mediated knockdown of these candidate genes inhibited the proliferation of HCC cells and the growth of HCC xenografts transplanted into immunodeficient mice.
Conclusions:
The four genes we identified were highly expressed in HCC, and HCC cells are highly dependent on these genes for proliferation. Although many important genes must have been overlooked, the selected genes were biologically relevant. The combination of genome-wide expression and functional screening described here is a rapid and comprehensive approach that could be applied in the identification of therapeutic targets in any type of human malignancy.
Insights
Researchers identified four key genes (AKR1B10, HCAP-G, RRM2, TPX2) highly expressed in hepatocellular carcinoma (HCC). Targeting these genes inhibited HCC cell proliferation and xenograft growth, offering potential new therapeutic strategies for this malignancy.
Area of Science:
- Oncology
- Genomics
- Molecular Biology
Background:
- Advanced hepatocellular carcinoma (HCC) presents poor patient outcomes.
- Patients often have limited liver function due to underlying conditions like chronic hepatitis or cirrhosis.
Purpose of the Study:
- To identify novel therapeutic targets specific to HCC.
- To find genes that, when targeted, minimally impact residual liver function.
Main Methods:
- Utilized high-density microarrays to compare gene expression in HCC versus non-tumorous liver and normal organs.
- Performed siRNA-based screening and quantitative reverse transcription-PCR for validation.
- Conducted immunohistochemistry and xenograft studies in immunodeficient mice.
Main Results:
- Identified eleven significantly upregulated transcripts in HCC.
- Four genes (AKR1B10, HCAP-G, RRM2, TPX2) were selected as candidate therapeutic targets.
- Knockdown of these genes suppressed HCC cell proliferation and xenograft tumor growth.
Conclusions:
- The identified genes are highly expressed in HCC and crucial for cancer cell proliferation.
- This genome-wide expression and functional screening approach is efficient for discovering therapeutic targets in various cancers.
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