Fatty acid oxidation supports melanoma cell migration through autophagy regulation
Metastasis is one of the most malignant characteristics of cancer cells, in which metabolic reprogramming is crucial for promoting and sustaining multi-steps of metastasis, including invasion, migration and infiltration. Recently, it has been shown that melanoma cells undergo a metabolic switching t...
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Veröffentlicht in: | Biochemical and biophysical research communications 2023-09, Vol.674, p.124-132 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Metastasis is one of the most malignant characteristics of cancer cells, in which metabolic reprogramming is crucial for promoting and sustaining multi-steps of metastasis, including invasion, migration and infiltration. Recently, it has been shown that melanoma cells undergo a metabolic switching toward the upregulation of fatty acid oxidation (FAO) during metastasis. However, the underlying mechanisms by which FAO contributes to metastasis of melanoma cells remain obscure. Here, we report that FAO contributes to melanoma cell migration and invasion by regulating the formation of autophagosomes. Pharmacological or genetic inhibition of FAO impairs migration of melanoma cells, which seems not to be linked to energy production or redox homeostasis. Importantly, we reveal that acetyl-CoA production by FAO contributes to melanoma cell migration through autophagy regulation. Mechanistically, FAO inhibition results in increased autophagosome formation, which suppresses migration and invasion properties of melanoma cells. Our results underscore the crucial role of FAO in melanoma cell migration and support the potential therapeutic relevance of modulating cellular acetyl-CoA levels to inhibit cancer metastasis.
•Fatty acid oxidation (FAO) is required for melanoma cell migration and invasion.•FAO facilitates cell migration through acetyl-CoA, independent of energy depletion or ROS production.•Acetyl-CoA supplementation rescues the impaired cell migration caused by FAO inhibition.•Autophagy induction following FAO inhibition impairs melanoma cell migration. |
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ISSN: | 0006-291X 1090-2104 |
DOI: | 10.1016/j.bbrc.2023.06.090 |