NADK Isoform 3 promotes oxidative stress resistance and melanoma metastasis

Elena Piskounova, Graciela Cascio, Kelsey Aguirre,Kellsey Church, Riley O Hughes, Leona Nease,Diego Quintana Licona,Ines Delclaux,Marwa Zerhouni

biorxiv(2023)

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摘要
Metastasizing cancer cells encounter a multitude of stresses throughout the metastatic cascade. Oxidative stress is known to be a major barrier for metastatic colonization, such that metastasizing cancer cells must rewire their metabolic pathways to increase their antioxidant capacity. NADPH is essential for regeneration of cellular antioxidants and several NADPH-regenerating pathways have been shown to play a role in metastasis. However, we have found that metastatic melanoma cells have increased levels of both NADPH and NADP+ suggesting increased de novo biosynthesis of NADP+. de novo biosynthesis of NADP+ occurs through a single enzymatic reaction catalyzed by NAD+ kinase (NADK). Here we show that different NADK isoforms are differentially expressed in metastatic melanoma cells, with Isoform 3 being specifically upregulated in metastasis. We found that Isoform 3 is much more potent in expanding the NADP(H) pools, increasing oxidative stress resistance and promoting metastatic colonization compared to Isoform 1. Mechanistically, we have found that Isoform 3 is transcriptionally upregulated by oxidative stress and hypoxia through the action of NRF2 and HIF1a. Together, our work presents a previously uncharacterized role of NADK isoforms in oxidative stress resistance and metastasis and suggests that NADK Isoform 3 is a potential therapeutic target in metastatic disease. ### Competing Interest Statement The authors have declared no competing interest.
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关键词
oxidative stress resistance,oxidative stress,metastasis,melanoma
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