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Assessment of Mitochondrial Functions and Cell Viability in Renal Cells Overexpressing Protein Kinase C Isozymes
Published on: January 7, 2013
Constitutive activation of mitogen-activated protein (MAP) kinases in human renal cell carcinoma
Abstract:
Mitogen-activated protein kinases (MAPKs) play a pivotal role in the mitogenic signal transduction pathway and are essential components of the MAPK cascade, which includes MEK (also known as MAP kinase kinase), Raf-1, and Ras. In this study, we examined whether constitutive activation of the MAPK cascade was associated with the carcinogenesis of human renal cell carcinomas in a series of 25 tumors and in corresponding normal kidneys. Constitutive activation of MAPKs in tumor tissue, as determined by the appearance of phosphorylated forms, was found in 12 cases (48%), and this activation was confirmed by a direct in vitro kinase assay of immunoprecipitate using myelin basic protein as the substrate. The phosphorylation of MEK and of Raf-1, as monitored by a mobility shift in SDS-PAGE, which is reportedly associated with the activation of these kinases, occurred in 9 of 18 cases (50%) and in 6 of 11 cases (55%) respectively. The activation of MAPKs was correlated with MEK activation (P = 0.0045) and with Raf-1 activation (P = 0.067). Furthermore, overexpression of MEK was found in 13 of 25 cases (52%) by Western blot analysis, and this overexpression was associated significantly with MAPK activation (P = 0.034). No mutations were noted in H-,K-, or N-ras genes by PCR direct sequencing in any of the 25 tumor samples. Of the patients studied, 8 of 18 (44%) stage pT2 patients and four of six (67%) stage pT3 patients showed MAPK activation. The single stage pT1 patient did not evidence MAPK activation. Furthermore, one of seven (14%) grade 1 patients, 9 of 13 (69%) grade 2 patients, and two of five (40%) grade 3 patients showed MAPK activation (grade 1 versus grades 2 and 3, P = 0.046). Our results suggest that constitutive activation of MAPKs may be associated with the carcinogenesis of human RCCs.
Insights
Constitutive activation of mitogen-activated protein kinases (MAPKs) was observed in nearly half of human renal cell carcinomas (RCCs). This MAPK activation correlated with MEK activation and was more prevalent in higher-grade and advanced-stage tumors, suggesting a role in RCC carcinogenesis.
Area of Science:
- Molecular Biology
- Oncology
- Signal Transduction
Background:
- Mitogen-activated protein kinases (MAPKs) are crucial in cell signaling pathways.
- The MAPK cascade, involving MEK, Raf-1, and Ras, regulates cell growth and differentiation.
- Aberrant signaling in the MAPK pathway is implicated in various cancers.
Purpose of the Study:
- To investigate the association between constitutive activation of the MAPK cascade and human renal cell carcinoma (RCC) carcinogenesis.
- To determine the prevalence of MAPK activation in RCC tumors.
- To explore correlations between MAPK activation and clinicopathological features of RCC.
Main Methods:
- Analysis of 25 human RCC tumors and corresponding normal kidney tissues.
- Detection of phosphorylated MAPKs (activated forms) via Western blot and in vitro kinase assays.
- Assessment of MEK and Raf-1 activation through SDS-PAGE mobility shifts.
- Western blot analysis for MEK overexpression.
- PCR direct sequencing for mutations in H-, K-, and N-ras genes.
Main Results:
- Constitutive MAPK activation was detected in 48% of RCC tumors.
- MEK activation (50%) and Raf-1 activation (55%) were observed and correlated with MAPK activation.
- MEK overexpression was found in 52% of tumors and significantly associated with MAPK activation.
- MAPK activation was more frequent in advanced stages (pT2, pT3) and higher grades (grade 2, grade 3) of RCC.
- No mutations in ras genes were identified.
Conclusions:
- Constitutive activation of MAPKs may play a significant role in the carcinogenesis of human renal cell carcinomas.
- The findings highlight the potential involvement of the MAPK pathway, particularly MEK, in RCC development.
- Further research into targeting the MAPK pathway for RCC treatment is warranted.
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