4.8 Article

Deregulated Myc Requires MondoA/Mlx for Metabolic Reprogramming and Tumorigenesis

期刊

CANCER CELL
卷 27, 期 2, 页码 271-285

出版社

CELL PRESS
DOI: 10.1016/j.ccell.2014.11.024

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资金

  1. NIH/NCI [R37CA57138]
  2. ITHS Clinical and Translational Science Award from NIH/NCRR [UL1RR025014]
  3. Chromosome Metabolism and Cancer Training Grant [T32 CA009657, RO1 EY06641, RO1 EY017863]
  4. NIH/NIGMS [R01-GM055668]

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Deregulated Myc transcriptionally reprograms cell metabolism to promote neoplasia. Here we show that oncogenic Myc requires the Myc superiamily member MondoA, a nutrient-sensing transcription factor, for tumorigenesis. Knockdown of MondoA, or its dimerization partner Mlx, blocks Myc-induced reprogramming of multiple metabolic pathways, resulting in apoptosis. Identification and knockdown of genes coregulated by Myc and MondoA have allowed us to define metabolic functions required by deregulated Myc and demonstrate a critical role for lipid biosynthesis in survival of Myc-driven cancer. Furthermore, overexpression of a subset of Myc and MondoA coregulated genes correlates with poor outcome of patients with diverse cancers. Coregulation of cancer metabolism by Myc and MondoA provides the potential for therapeutics aimed at inhibiting MondoA and its target genes.

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