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PMID: 26823948 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Inhibition of the RhoA GTPase Activity Increases Sensitivity of Melanoma Cells to UV Radiation Effects.

Oxidative medicine and cellular longevity ·Vol. 2016 ·2016-00-00 ·Pages 2696952

Espinha G, Osaki JH, Costa ET, Forti FL

Abstract

Ultraviolet radiation is the main cause of DNA damage to melanocytes and development of melanoma, one of the most lethal human cancers, which leads to metastasis due to uncontrolled cell proliferation and migration. These phenotypes are mediated by RhoA, a GTPase overexpressed or overactivated in highly aggressive metastatic tumors that plays regulatory roles in cell cycle progression and cytoskeleton remodeling. This work explores whether the effects of UV on DNA damage, motility, proliferation, and survival of human metastatic melanoma cells are mediated by the RhoA pathway. Mutant cells expressing dominant-negative (MeWo-RhoA-N19) or constitutively active RhoA (MeWo-RhoA-V14) were generated and subjected to UV radiation. A slight reduction in migration and invasion was observed in MeWo and MeWo-RhoA-V14 cells but not in MeWo-RhoA-N19 cells, which presented inefficient motility and invasiveness associated with stress fibers fragmentation. Proliferation and survival of RhoA-deficient cells were drastically reduced by UV compared to cells displaying normal or high RhoA activity, suggesting increased sensitivity to UV. Loss of RhoA activity also caused less efficient DNA repair, with elevated levels of DNA lesions such as strand breaks and cyclobutane pyrimidine dimers (CPDs). Thus, RhoA mediates genomic stability and represents a potential target for sensitizing metastatic tumors to genotoxic agents.

MeSH Terms
Apoptosis Regulatory Proteins Cell Line, Tumor/radiation effects Cell Movement Cell Proliferation Comet Assay DNA Damage DNA Repair GTP-Binding Proteins Glutathione Transferase/metabolism Humans Intracellular Signaling Peptides and Proteins/metabolism Melanoma/metabolism,pathology Microscopy, Fluorescence Neoplasm Invasiveness Neoplasm Metastasis Pyrimidine Dimers/chemistry Skin Neoplasms/metabolism,pathology Ultraviolet Rays rhoA GTP-Binding Protein/metabolism
Chemicals
Apoptosis Regulatory Proteins Intracellular Signaling Peptides and Proteins Pyrimidine Dimers RTKN protein, human RHOA protein, human Glutathione Transferase GTP-Binding Proteins rhoA GTP-Binding Protein
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Espinha Gisele
Laboratory of Signaling in Biomolecular Systems, Department of Biochemistry, Institute of Chemistry, University of Sao Paulo, 05508-000 Sao Paulo, SP, Brazil.
Osaki Juliana Harumi
Laboratory of Signaling in Biomolecular Systems, Department of Biochemistry, Institute of Chemistry, University of Sao Paulo, 05508-000 Sao Paulo, SP, Brazil.
Costa Erico Tosoni
Centro de Oncologia Molecular, Hospital Sirio Libanes, 01308-060 Sao Paulo, SP, Brazil; Ludwig Institute for Cancer Research (LICR), 01509-010 Sao Paulo, SP, Brazil.
Forti Fabio Luis
Laboratory of Signaling in Biomolecular Systems, Department of Biochemistry, Institute of Chemistry, University of Sao Paulo, 05508-000 Sao Paulo, SP, Brazil.
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Article Info
Journal
Oxidative medicine and cellular longevity
Abbr.
Oxid Med Cell Longev
ISSN
1942-0994
Published
2016-00-00
Epub
2015-00-28
Pages
2696952
Language
English
Region
United States
NLM ID
101479826
PMCID
PMC4707346
Subset
IM
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