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MDA-9/Syntenin: An emerging global molecular target regulating cancer invasion and metastasis
Swadesh K Das1, Devanand Sarkar1, Luni Emdad1
1Department of Human and Molecular Genetics, Virginia Commonwealth University, School of Medicine, Richmond, VA, United States; VCU Institute of Molecular Medicine, Virginia Commonwealth University, School of Medicine, Richmond, VA, United States; VCU Massey Cancer Center, Virginia Commonwealth University, School of Medicine, Richmond, VA, United States.
Abstract:
With few exceptions, metastasis is the terminal stage of cancer with limited therapeutic options. Metastasis consists of numerous phenotypic and genotypic alterations of cells that are directly and indirectly induced by multiple intrinsic (cellular) and extrinsic (micro-environmental) factors. To metastasize, a cancer cell often transitions from an epithelial to mesenchymal morphology (EMT), modifies the extracellular matrix, forms emboli and survives in the circulation, escapes immune surveillance, adheres to sites distant from the initial tumor and finally develops a blood supply (angiogenesis) and colonizes in a secondary niche (a micrometastasis). Scientific advances have greatly enhanced our understanding of the precise molecular and genetic changes, operating independently or collectively, that lead to metastasis. This review focuses on a unique gene, melanoma differentiation associated gene-9 (also known as Syntenin-1; Syndecan Binding Protein (sdcbp); mda-9/syntenin), initially cloned and characterized from metastatic human melanoma and shown to be a pro-metastatic gene. In the last two decades, our comprehension of the diversity of actions of MDA-9/Syntenin on cellular phenotype has emerged. MDA-9/Sytenin plays pivotal regulatory roles in multiple signaling cascades and orchestrates both metastatic and non-metastatic events. Considering the relevance of this gene in controlling cancer invasion and metastasis, approaches have been developed to uniquely and selectively target this gene. We also provide recent updates on strategies that have been successfully employed in targeting MDA-9/Syntenin resulting in profound pre-clinical anti-cancer activity.
Insights
Melanoma differentiation associated gene-9 (MDA-9/Syntenin) is a pro-metastatic gene that drives cancer invasion and metastasis. Targeting MDA-9/Syntenin shows significant preclinical anti-cancer activity.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Metastasis is the primary cause of cancer mortality, characterized by complex cellular and molecular changes.
- Understanding the genetic drivers of metastasis is crucial for developing effective cancer therapies.
- Melanoma differentiation associated gene-9 (MDA-9/Syntenin) is implicated in promoting cancer cell invasion and metastasis.
Purpose of the Study:
- To review the multifaceted roles of MDA-9/Syntenin in cancer progression.
- To highlight the regulatory functions of MDA-9/Syntenin in various signaling pathways.
- To present recent therapeutic strategies targeting MDA-9/Syntenin for anti-cancer activity.
Main Methods:
- Literature review of studies on MDA-9/Syntenin and cancer metastasis.
- Analysis of molecular and genetic alterations associated with metastasis.
- Examination of preclinical data on MDA-9/Syntenin targeted therapies.
Main Results:
- MDA-9/Syntenin orchestrates numerous cellular events crucial for metastasis, including epithelial-mesenchymal transition (EMT) and angiogenesis.
- The gene plays pivotal roles in multiple signaling cascades, influencing both metastatic and non-metastatic cellular phenotypes.
- Targeting MDA-9/Syntenin has demonstrated significant preclinical anti-cancer efficacy.
Conclusions:
- MDA-9/Syntenin is a key regulator of cancer invasion and metastasis.
- Targeting MDA-9/Syntenin represents a promising therapeutic strategy for various cancers.
- Further research into MDA-9/Syntenin functions may unveil novel anti-cancer interventions.
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