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Updated: May 13, 2025

DNA Vector-based RNA Interference to Study Gene Function in Cancer
Published on: June 4, 2012
Transcription Factor YY2 Inhibits Tumor Cell Glutamine Catabolism by Regulating GLS1 RNA Splicing Isoform GAC
Jingyi Liu1, Juan Li1, Yanjun Li2
1Key Laboratory of Biorheological Science and Technology, Ministry of Education, College of Bioengineering, Chongqing University, Chongqing, China.
Abstract:
The metabolic reprogramming of amino acids is critical for tumorigenesis. Alterations in amino acid metabolism are frequently observed in tumors and are crucial for fulfilling the demand for macromolecular biosynthesis, redox balance, and energy production in tumor cells. Despite its importance, the mechanism regulating amino acid metabolic reprogramming in tumor cells has not been completely elucidated. Herein, colorectal cancer and hepatocarcinoma cells were used to show that Yin yang 2 (YY2) significantly reduced the transcriptional activity of glutaminase 1 (GLS1), which hydrolyzes glutamine to glutamate, by decreasing the expression of glutaminase C, a splicing isoform of GLS1. This, in turn, promoted glutamine accumulation while decreasing that of glutamate, leading to a drop in DNA and de novo glutathione synthesis, followed by a reduction in tumor cell proliferation and antioxidant capacity. Subsequently, YY2/GLS1-mediated inhibition of glutamine catabolism significantly suppressed tumorigenic potential in vivo. Critically, mutant YY2, often found in clinical tumor samples, failed to exert this effect. Together, these results identified YY2/glutaminase C as a negative regulator of glutamine catabolism in tumor cells and revealed a novel molecular mechanism underlying the tumor-suppressive effect of YY2. Moreover, these findings suggest that YY2 could serve as an antitumor therapeutic agent by targeting glutamine metabolism.
Insights
Yin Yang 2 (YY2) inhibits tumor growth by reducing glutaminase 1 (GLS1) activity, which decreases glutamine metabolism. This finding reveals YY2 as a potential therapeutic target for cancer treatment.
Area of Science:
- Biochemistry
- Molecular Biology
- Oncology
Background:
- Amino acid metabolism reprogramming is essential for tumor growth.
- Mechanisms regulating this metabolic shift in cancer remain incompletely understood.
Purpose of the Study:
- To investigate the role of Yin Yang 2 (YY2) in regulating amino acid metabolism in cancer cells.
- To elucidate the molecular mechanisms by which YY2 influences tumor cell proliferation and survival.
Main Methods:
- Utilized colorectal cancer and hepatocarcinoma cell lines.
- Assessed the effect of YY2 on the transcriptional activity of glutaminase 1 (GLS1).
- Analyzed glutamine and glutamate levels, DNA synthesis, glutathione production, and tumor cell proliferation.
Main Results:
- YY2 significantly reduced GLS1 transcriptional activity by downregulating glutaminase C, a GLS1 splice isoform.
- This led to increased glutamine, decreased glutamate, reduced DNA and glutathione synthesis, and impaired tumor cell proliferation.
- YY2-mediated inhibition of glutamine metabolism suppressed tumor growth in vivo.
- Mutant YY2, found in clinical samples, lost its tumor-suppressive function.
Conclusions:
- YY2 acts as a negative regulator of glutamine catabolism in tumor cells via the GLS1/glutaminase C axis.
- This study uncovers a novel mechanism for YY2's tumor-suppressive activity.
- YY2 targeting glutamine metabolism presents a potential therapeutic strategy for cancer treatment.
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