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Another small molecule in the oncometabolite mix: L-2-Hydroxyglutarate in kidney cancer
Eun-Hee Shim1, Sunil Sudarshan1
1Department of Urology, University of Alabama at Birmingham, Birmingham, AL, United States.
Abstract:
Alterations in metabolism are now considered a hallmark of cancer. One of the clearest links between metabolism and malignancy are oncometabolites. To date, several putative oncometabolites with transforming properties have been identified in the context of tumors due to both gain and loss of function mutations in genes encoding enzymes of intermediary metabolism. Through an unbiased metabolomics approach, we identified elevations of the metabolite 2-hydroxyglutarate (2-HG) in the most common histology of kidney cancer that is among the most common malignancies in both men and women. Subsequent analyses demonstrate that the predominant enantiomer of 2-HG elevated in renal cancer is the L(S) form. Notably, elevations of L-2HG are due in part to loss of expression of the L-2HG dehydrogenase (L2HGDH) which normally serves as an enzyme of "metabolite repair" to keep levels of this metabolite from accumulating. Lowering L-2HG levels in RCC through re-expression of L2HGDH mitigates tumor phenotypes and reverses epigenetic alterations known to be targeted by oncometabolites. These data add to the growing body of evidence that metabolites, similarly to oncogenes and oncoproteins, can play a role in tumor development and/or progression. As such, they represent a unique opportunity to utilize these findings in the clinic setting.
Insights
Elevated L-2-hydroxyglutarate (L-2HG), an oncometabolite, is linked to kidney cancer. Restoring L-2HG dehydrogenase (L2HGDH) function reduces tumor growth and epigenetic changes, offering a potential therapeutic strategy.
Area of Science:
- Biochemistry
- Oncology
- Metabolomics
Background:
- Metabolic alterations are a hallmark of cancer, with oncometabolites playing a key role in malignancy.
- Oncometabolites are linked to tumors through genetic mutations affecting intermediary metabolism enzymes.
Purpose of the Study:
- To investigate the role of 2-hydroxyglutarate (2-HG) in kidney cancer.
- To explore the therapeutic potential of targeting L-2HG metabolism in renal cell carcinoma (RCC).
Main Methods:
- Unbiased metabolomics approach to identify elevated metabolites in kidney cancer.
- Analysis of 2-HG enantiomers and the role of L-2HG dehydrogenase (L2HGDH) expression.
- Investigating the effects of L2HGDH re-expression on tumor phenotypes and epigenetic alterations.
Main Results:
- Elevated levels of 2-hydroxyglutarate (2-HG), particularly the L(S) enantiomer, were identified in kidney cancer.
- Loss of L2HGDH expression contributes to L-2HG accumulation in RCC.
- Restoring L2HGDH mitigated tumor phenotypes and reversed oncometabolite-targeted epigenetic alterations.
Conclusions:
- Oncometabolites like L-2HG can drive tumor development and progression.
- Targeting L-2HG metabolism by restoring L2HGDH function shows therapeutic promise for kidney cancer.
- Metabolite-based therapies represent a novel clinical opportunity in oncology.
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