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Screening for Melanoma Modifiers using a Zebrafish Autochthonous Tumor Model
Published on: November 13, 2012
Melanoma LAMP-2C Modulates Tumor Growth and Autophagy
Liliana Pérez1, Anthony L Sinn2, George E Sandusky3
1Virus Persistence and Dynamics Section, Vaccine Research Center, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Bethesda, MD, United States.
Abstract:
Autophagy plays critical but diverse roles in cellular quality control and homeostasis potentially checking tumor development by removing mutated or damaged macromolecules, while conversely fostering tumor survival by supplying essential nutrients during cancer progression. This report documents a novel inhibitory role for a lysosome-associated membrane protein, LAMP-2C in modulating autophagy and melanoma cell growth in vitro and in vivo. Solid tumors such as melanomas encounter a variety of stresses in vivo including inflammatory cytokines produced by infiltrating lymphocytes directed at limiting tumor growth and spread. Here, we report that in response to the anti-tumor, pro-inflammatory cytokine interferon-gamma, melanoma cell expression of LAMP2C mRNA significantly increased. These results prompted an investigation of whether increased melanoma cell expression of LAMP-2C might represent a mechanism to control or limit human melanoma growth and survival. In this study, enhanced expression of human LAMP-2C in melanoma cells perturbed macroautophagy and chaperone-mediated autophagy in several human melanoma lines. In vitro analysis showed increasing LAMP-2C expression in a melanoma cell line, triggered reduced cellular LAMP-2A and LAMP-2B protein expression. Melanoma cells with enhanced LAMP-2C expression displayed increased cell cycle arrest, increased expression of the cell cycle regulators Chk1 and p21, and greater apoptosis and necrosis in several cell lines tested. The increased abundance of Chk1 protein in melanoma cells with increased LAMP-2C expression was not due to higher CHEK1 mRNA levels, but rather an increase in Chk1 protein abundance including Chk1 molecules phosphorylated at Ser345. Human melanoma cell xenografts with increased LAMP-2C expression, displayed reduced growth in immune compromised murine hosts. Melanomas with high LAMP-2C expression showed increased necrosis and reduced cell density upon histological analysis. These results reveal a novel role for LAMP-2C in negatively regulating melanoma growth and survival.
Insights
Lysosome-associated membrane protein 2C (LAMP-2C) inhibits melanoma growth by altering autophagy and promoting cell cycle arrest and apoptosis. Increased LAMP-2C expression reduces tumor progression in vivo, revealing a novel tumor-suppressive role.
Area of Science:
- Oncology
- Cell Biology
- Molecular Biology
Background:
- Autophagy has dual roles in cancer, potentially inhibiting tumor initiation but promoting survival during progression.
- Melanoma cells face stresses, including inflammatory cytokines like interferon-gamma, which can influence tumor behavior.
- Lysosome-associated membrane protein 2 (LAMP-2) isoforms, including LAMP-2C, are involved in cellular processes, but their specific role in melanoma is unclear.
Purpose of the Study:
- To investigate the novel inhibitory role of LAMP-2C in modulating autophagy and melanoma cell growth.
- To determine if increased LAMP-2C expression in melanoma cells represents a mechanism to control tumor growth and survival.
- To explore the effects of LAMP-2C on autophagy pathways and cell cycle regulation in melanoma.
Main Methods:
- Enhanced expression of human LAMP-2C in melanoma cell lines (in vitro) and in human melanoma cell xenografts (in vivo).
- Analysis of macroautophagy and chaperone-mediated autophagy.
- Assessment of cell cycle arrest, apoptosis, necrosis, and expression of cell cycle regulators (Chk1, p21).
- Histological analysis of tumor xenografts.
Main Results:
- Increased LAMP-2C expression perturbed macroautophagy and chaperone-mediated autophagy.
- Enhanced LAMP-2C led to reduced LAMP-2A and LAMP-2B protein levels.
- Melanoma cells with higher LAMP-2C showed increased cell cycle arrest, elevated Chk1 and p21 expression, and greater apoptosis/necrosis.
- Human melanoma xenografts with increased LAMP-2C exhibited reduced growth, increased necrosis, and lower cell density.
Conclusions:
- LAMP-2C plays a novel, inhibitory role in regulating melanoma cell growth and survival.
- Increased LAMP-2C expression negatively impacts melanoma progression by affecting autophagy and inducing cell cycle arrest and cell death.
- LAMP-2C represents a potential therapeutic target for melanoma treatment.
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