MITF controls the TCA cycle to modulate the melanoma hypoxia response.

Pigment Cell Melanoma Res

Ludwig Institute for Cancer Research, Nuffield Department of Clinical Medicine, University of Oxford, Oxford, UK.

Published: November 2019

AI Article Synopsis

  • - Melanoma cells adapt to their changing environment by showing different phenotypic states tied to the expression of the MITF protein, which is influenced by factors responding to low oxygen levels (hypoxia).
  • - During hypoxia, HIF1α plays a critical role in regulating MITF, which in turn affects the expression of certain genes, including those involved in blood vessel formation like VEGFA.
  • - The study finds that while there is a common set of 23 genes affected by hypoxia across different melanoma cell lines, MITF has a unique function in the cells' metabolic processes and can repress its own expression to manage the response to hypoxic conditions.

Article Abstract

In response to the dynamic intra-tumor microenvironment, melanoma cells adopt distinct phenotypic states associated with differential expression of the microphthalmia-associated transcription factor (MITF). The response to hypoxia is driven by hypoxia-inducible transcription factors (HIFs) that reprogram metabolism and promote angiogenesis. HIF1α indirectly represses MITF that can activate HIF1α expression. Although HIF and MITF share a highly related DNA-binding specificity, it is unclear whether they co-regulate subset of target genes. Moreover, the genomewide impact of hypoxia on melanoma and whether melanoma cell lines representing different phenotypic states exhibit distinct hypoxic responses is unknown. Here we show that three different melanoma cell lines exhibit widely different hypoxia responses with only a core 23 genes regulated in common after 12 hr in hypoxia. Surprisingly, under hypoxia MITF is transiently up-regulated by HIF1α and co-regulates a subset of HIF targets including VEGFA. Significantly, we also show that MITF represses itself and also regulates SDHB to control the TCA cycle and suppress pseudo-hypoxia. Our results reveal a previously unsuspected role for MITF in metabolism and the network of factors underpinning the hypoxic response in melanoma.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6777998PMC
http://dx.doi.org/10.1111/pcmr.12802DOI Listing

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