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Published on: May 18, 2018
Functional and therapeutic significance of Akt deregulation in malignant melanoma
1Department of Pharmacology, The Pennsylvania State University College of Medicine, 500 University Dr., Hershey, Pennsylvania, 17033, USA. gprobertson@psu.edu
Abstract:
Identification of specific genes or signaling pathways involved in development of melanoma could lead to new therapies that target and correct these defects. Recent studies have revealed deregulation of the Akt signaling pathway occurring in 43-67% of melanomas. Akt kinase family members, Akt1/PKBalpha, Akt2/PKBbeta and Akt3/PKBgamma, share extensive structural similarity and perform common as well as unique functions within cells. The Akt signaling cascade initiates at the cell surface when growth factors or other extracellular stimuli activate phosphoinositide 3-kinase (PI3K). Activated PI3K generates a lipid second messenger, phosphatidylinositol-3,4,5-trisphosphate (PIP3), causing translocation of Akt to the plasma membrane where it becomes phosphorylated and activated. The balance of cellular PIP3 is regulated primarily by a phosphatase called PTEN that reduces PIP3 levels thereby lowering Akt activity. In melanomas, decreased PTEN activity elevates PIP3 levels resulting in Akt activation. Active Akt then phosphorylates downstream cellular proteins that promote melanoma cell proliferation and survival. Recently, Akt3 was discovered to be the predominant isoform activated in sporadic melanomas. Levels of activity increased during melanoma progression with metastatic melanomas having the highest activity. Although mechanisms of Akt3 activation remain to be fully characterized, overexpression of Akt3 and decreased PTEN activity play important roles in this process. Targeted reduction of Akt3 activity decreased survival of melanoma tumor cells leading to inhibition of tumor development, which may be therapeutically effective for shrinking tumors in melanoma patients. This review surveys recent developments in Akt deregulation in melanoma and its potential as a selective therapeutic target in patients in the advanced stages of this disease.
Insights
Deregulation of the Akt signaling pathway, particularly Akt3, is common in melanoma. Targeting Akt3 activity shows promise for inhibiting melanoma tumor growth and may offer new therapeutic strategies for advanced melanoma.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Melanoma development involves specific genes and signaling pathways.
- The Akt signaling pathway is deregulated in 43-67% of melanomas.
- Akt kinase family members (Akt1, Akt2, Akt3) are crucial for cellular functions.
Purpose of the Study:
- To review recent developments in Akt deregulation in melanoma.
- To explore the potential of Akt as a selective therapeutic target in advanced melanoma.
Main Methods:
- Review of recent scientific literature on Akt signaling in melanoma.
- Analysis of the role of Akt isoforms, particularly Akt3, in melanoma progression.
- Examination of the interplay between PTEN, PIP3, and Akt activity.
Main Results:
- Akt3 is the predominant isoform activated in sporadic melanomas.
- Akt activity increases during melanoma progression, with highest levels in metastatic melanomas.
- Overexpression of Akt3 and decreased PTEN activity contribute to Akt activation in melanoma.
Conclusions:
- Targeted reduction of Akt3 activity inhibits melanoma cell survival and tumor development.
- Akt deregulation, especially Akt3, represents a potential therapeutic target for advanced melanoma.
- Further characterization of Akt3 activation mechanisms is needed for therapeutic development.
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