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Published on: January 22, 2013
Metabolic Adaptation as Potential Target in Papillary Renal Cell Carcinomas Based on Their In Situ Metabolic
Ildikó Krencz1, Enikő Vetlényi1, Titanilla Dankó1
1Department of Pathology and Experimental Cancer Research, Semmelweis University, Üllői út 26, H-1085 Budapest, Hungary.
Abstract:
Metabolic characteristics of kidney cancers have mainly been obtained from the most frequent clear cell renal cell carcinoma (CCRCC) studies. Moreover, the bioenergetic perturbances that affect metabolic adaptation possibilities of papillary renal cell carcinoma (PRCC) have not yet been detailed. Therefore, our study aimed to analyze the in situ metabolic features of PRCC vs. CCRCC tissues and compared the metabolic characteristics of PRCC, CCRCC, and normal tubular epithelial cell lines. The protein and mRNA expressions of the molecular elements in mammalian target of rapamycin (mTOR) and additional metabolic pathways were analyzed in human PRCC cases compared to CCRCC. The metabolic protein expression pattern, metabolite content, mTOR, and metabolic inhibitor sensitivity of renal carcinoma cell lines were also studied and compared with tubular epithelial cells, as "normal" control. We observed higher protein expressions of the "alternative bioenergetic pathway" elements, in correlation with the possible higher glutamine and acetate consumption in PRCC cells instead of higher glycolytic and mTOR activity in CCRCCs. Increased expression of certain metabolic pathway markers correlates with the detected differences in metabolite ratios, as well. The lower lactate/pyruvate, lactate/malate, and higher pyruvate/citrate intracellular metabolite ratios in PRCC compared to CCRCC cell lines suggest that ACHN (PRCC) have lower Warburg glycolytic capacity, less pronounced pyruvate to lactate producing activity and shifted OXPHOS phenotype. However, both studied renal carcinoma cell lines showed higher mTOR activity than tubular epithelial cells cultured in vitro, the metabolite ratio, the enzyme expression profiles, and the higher mitochondrial content also suggest increased importance of mitochondrial functions, including mitochondrial OXPHOS in PRCCs. Additionally, PRCC cells showed significant mTOR inhibitor sensitivity and the used metabolic inhibitors increased the effect of rapamycin in combined treatments. Our study revealed in situ metabolic differences in mTOR and metabolic protein expression patterns of human PRCC and CCRCC tissues as well as in cell lines. These underline the importance in the development of specific new treatment strategies, new mTOR inhibitors, and other anti-metabolic drug combinations in PRCC therapy.
Insights
Papillary renal cell carcinoma (PRCC) exhibits distinct metabolic features, including alternative bioenergetic pathway activity and higher mitochondrial oxidative phosphorylation (OXPHOS), compared to clear cell renal cell carcinoma (CCRCC). PRCC shows sensitivity to mTOR inhibitors, suggesting new therapeutic strategies.
Area of Science:
- Cancer Metabolism
- Renal Cell Carcinoma Subtypes
- Molecular Oncology
Background:
- Metabolic studies in kidney cancer predominantly focus on clear cell renal cell carcinoma (CCRCC).
- The specific bioenergetic alterations in papillary renal cell carcinoma (PRCC) remain underexplored.
- Understanding metabolic differences is crucial for targeted therapies in distinct RCC subtypes.
Purpose of the Study:
- To delineate the in situ metabolic characteristics of PRCC in comparison to CCRCC.
- To analyze and compare metabolic pathways, including mTOR signaling, in PRCC, CCRCC, and normal kidney cells.
- To investigate the potential of metabolic inhibitors and mTOR inhibitors in PRCC treatment.
Main Methods:
- Analysis of protein and mRNA expression of metabolic pathway elements in human PRCC and CCRCC tissues.
- Comparison of metabolic profiles, metabolite ratios, and mTOR activity in PRCC, CCRCC, and normal tubular epithelial cell lines.
- Assessment of sensitivity to metabolic inhibitors and rapamycin in renal carcinoma cell lines.
Main Results:
- PRCC tissues and cell lines show higher expression of alternative bioenergetic pathway components, suggesting glutamine and acetate utilization.
- CCRCC exhibits higher glycolytic and mTOR activity, while PRCC demonstrates lower Warburg effect and a more pronounced OXPHOS phenotype.
- Both PRCC and CCRCC cell lines display elevated mTOR activity compared to normal cells; PRCC shows significant sensitivity to mTOR inhibitors.
Conclusions:
- Significant in situ metabolic differences exist between PRCC and CCRCC, particularly in bioenergetics and mTOR pathway activity.
- PRCC's metabolic profile suggests a greater reliance on mitochondrial oxidative phosphorylation.
- These findings support the development of targeted therapies, including novel mTOR inhibitors and anti-metabolic drug combinations, for PRCC treatment.
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