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Dissection of the MKK3 Functions in Human Cancer: A Double-Edged Sword?
Valentina Piastra1, Angelina Pranteda1, Gianluca Bossi1
1Oncogenomic and Epigenetic Unit, Department of Diagnostic Research and Technological Innovation, IRCC-Regina Elena National Cancer Institute, Via Elio Chianesi 53, 00144 Rome, Italy.
Abstract:
The role played by MKK3 in human cancer is controversial. MKK3 is an evolutionarily conserved protein kinase that activates in response to a variety of stimuli. Phosphorylates, specifically the p38MAPK family proteins, contribute to the regulation of a plethora of cellular processes such as proliferation, differentiation, apoptosis, invasion, and cell migration. Genes in carcinogenesis are classified as oncogenes and tumor suppressors; however, a clear distinction is not always easily made as it depends on the cell context and tissue specificity. The aim of this study is the examination of the potential contribution of MKK3 in cancer through a systematic analysis of the recent literature. The overall results reveal a complex scenario of MKK3's involvement in cancer. The oncogenic functions of MKK3 were univocally documented in several solid tumors, such as colorectal, prostate cancer, and melanoma, while its tumor-suppressing functions were described in glioblastoma and gastric cancer. Furthermore, a dual role of MKK3 as an oncogene as well as tumor a suppressor has been described in breast, cervical, ovarian, liver, esophageal, and lung cancer. However, overall, more evidence points to its role as an oncogene in these diseases. This review indicates that the oncogenic and tumor-suppressing roles of MKK3 are strictly dependent on the tumor type and further suggests that MKK3 could represent an efficient putative molecular target that requires contextualization within a specific tumor type in order to adequately evaluate its potential effectiveness in designing novel anticancer therapies.
Insights
Mitogen-activated protein kinase kinase 3 (MKK3) has a complex role in human cancer, acting as both an oncogene and tumor suppressor. Its function is highly context-dependent, suggesting MKK3 as a potential therapeutic target requiring specific tumor-type evaluation.
Area of Science:
- Molecular Biology
- Oncology
- Biochemistry
Background:
- Mitogen-activated protein kinase kinase 3 (MKK3) is a conserved protein kinase involved in cellular processes relevant to cancer.
- The classification of genes in carcinogenesis as oncogenes or tumor suppressors can be context-dependent.
- The specific role of MKK3 in human cancer remains a subject of debate.
Purpose of the Study:
- To systematically review and analyze the recent literature on the role of MKK3 in human cancer.
- To elucidate the dualistic functions of MKK3 in various cancer types.
- To assess the potential of MKK3 as a molecular target for anticancer therapies.
Main Methods:
- Systematic literature review.
- Analysis of published studies investigating MKK3 expression and function in different human cancers.
- Synthesis of findings regarding oncogenic and tumor-suppressive roles of MKK3.
Main Results:
- MKK3 exhibits oncogenic functions in colorectal cancer, prostate cancer, and melanoma.
- MKK3 demonstrates tumor-suppressive functions in glioblastoma and gastric cancer.
- A dual role for MKK3 was observed in breast, cervical, ovarian, liver, esophageal, and lung cancers, with a preponderance of evidence suggesting oncogenic activity.
Conclusions:
- The role of MKK3 in human cancer is complex and highly dependent on the specific tumor type.
- MKK3 can function as either an oncogene or a tumor suppressor.
- Contextualizing MKK3's role within specific cancer types is crucial for evaluating its potential as a therapeutic target in novel anticancer strategies.
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