Invasiveness is a hallmark of aggressive cancer like malignant melanoma, and factors involved in acquisition or maintenance of an invasive phenotype are attractive targets for therapy. We investigated melanoma phenotype modulation induced by the metastasis-promoting microenvironmental protein S100A4, focusing on the relationship between enhanced cellular motility, dedifferentiation and metabolic changes. In poorly motile, well-differentiated Melmet 5 cells, S100A4 stimulated migration, invasion and simultaneously down-regulated differentiation genes and modulated expression of metabolism genes. Metabolic studies confirmed suppressed mitochondrial respiration and activated glycolytic flux in the S100A4 stimulated cells, indicating a metaboli...
The hallmarks of cancer comprise six biological capabilities acquired during the multistep developme...
Malignant melanoma exhibits a distinct metabolic phenotype with high glycolytic activity. Previously...
Cancer cells undergo a multifaceted rewiring of cellular metabolism to support their biosynthetic ne...
Melanoma is a complex and aggressive cancer type that contains different cell subpopulations display...
Acquisition by cancer cells of a plethora of resistance-conferring genetic alterations greatly limit...
Aerobic glycolysis, also referred to as the Warburg effect, has been regarded as the dominant metabo...
Cancer cells usually reside in microenvironment stress, such as hypoxia, acidosis, Hypo-nutrition an...
While aerobic glycolysis, or the Warburg effect, has for a long time been considered a hallmark of t...
Cutaneous melanoma (CM) represents one of the most metastasizing and drug resistant solid tumors. CM...
Resistance to therapy continues to be a barrier to curative treatments in melanoma. Recent insights ...
Cancer cells are different from normal cells in their metabolic properties. Normal cells mostly rely...
Conversion of normal cells to cancer is accompanied with changes in their metabolism. During this co...
This study explores the V600BRAF-MITF-PGC-1α axis and compares metabolic and functional changes occu...
Energetic pathways combine in the heart of metabolism. These essential routes supply energy for bioc...
Cancer cells undergo a multifaceted rewiring of cellular metabolism to support their biosynthetic ne...
The hallmarks of cancer comprise six biological capabilities acquired during the multistep developme...
Malignant melanoma exhibits a distinct metabolic phenotype with high glycolytic activity. Previously...
Cancer cells undergo a multifaceted rewiring of cellular metabolism to support their biosynthetic ne...
Melanoma is a complex and aggressive cancer type that contains different cell subpopulations display...
Acquisition by cancer cells of a plethora of resistance-conferring genetic alterations greatly limit...
Aerobic glycolysis, also referred to as the Warburg effect, has been regarded as the dominant metabo...
Cancer cells usually reside in microenvironment stress, such as hypoxia, acidosis, Hypo-nutrition an...
While aerobic glycolysis, or the Warburg effect, has for a long time been considered a hallmark of t...
Cutaneous melanoma (CM) represents one of the most metastasizing and drug resistant solid tumors. CM...
Resistance to therapy continues to be a barrier to curative treatments in melanoma. Recent insights ...
Cancer cells are different from normal cells in their metabolic properties. Normal cells mostly rely...
Conversion of normal cells to cancer is accompanied with changes in their metabolism. During this co...
This study explores the V600BRAF-MITF-PGC-1α axis and compares metabolic and functional changes occu...
Energetic pathways combine in the heart of metabolism. These essential routes supply energy for bioc...
Cancer cells undergo a multifaceted rewiring of cellular metabolism to support their biosynthetic ne...
The hallmarks of cancer comprise six biological capabilities acquired during the multistep developme...
Malignant melanoma exhibits a distinct metabolic phenotype with high glycolytic activity. Previously...
Cancer cells undergo a multifaceted rewiring of cellular metabolism to support their biosynthetic ne...