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Feed-forward Cysteine Regulation Maintains Melanoma Differentiation State and Limits Metastatic Spread

GSE269922 Homo sapiens Expression profiling by high throughput sequencing 8 samples Submitted 2024/08/16 Platform GPL23227
Summary
The inherent ability of melanoma cells to alter the differentiation-associated transcriptional repertoire to evade treatment and facilitate metastatic spread is well accepted and has been termed phenotypic switching. However, how these facets of cellular behavior are controlled remains largely elusive. Here we show that cysteine availability, whether from lysosomes (CTNS-dependent) or exogenously derived (SLC7A11-dependent or as N-acetylcysteine), controls melanoma differentiation-associated pathways by acting on the melanocyte master regulator MITF. Functional data indicate that low cysteine availability reduces MITF levels and impairs lysosome functions, which affects tumor ferroptosis sensitivity but improves metastatic spread in vivo. Mechanistically, cysteine-restrictive conditions reduce acetyl-CoA levels to decrease p300-mediated H3K27 acetylation at the melanocyte-restricted MITF promoter, thus forming a cysteine feed-forward regulation that controls MITF levels and downstream lysosome functions. These findings collectively suggest that cysteine homeostasis governs melanoma differentiation by maintaining MITF levels and lysosome functions, which protect against ferroptosis and limit metastatic spread.
Published in
Feedforward cysteine regulation maintains melanoma differentiation state and limits metastatic spread
Yu D, Liang J, Widlund HR et al. · Cell reports 2024 · PMID 38990725 · doi:10.1016/j.celrep.2024.114484
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Also filed as BioProject PRJNA1124125 and SRA study SRP514000. Searching any of these in the dataset finder brings you back here.

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