4.3 Article

In vivo quantification and perturbation of Myc-Max interactions and the impact on oncogenic potential

期刊

ONCOTARGET
卷 5, 期 19, 页码 8869-8878

出版社

IMPACT JOURNALS LLC
DOI: 10.18632/oncotarget.2588

关键词

transcription factor; protein-protein interactions; biosensor; small-molecule inhibitors; cancer

资金

  1. Austrian Science Fund [P23652, P22608]
  2. National Cancer Institute [R01 CA078230]
  3. Skaggs Institute for Chemical Biology
  4. Austrian Science Fund (FWF) [P 23652, P 22608] Funding Source: researchfish
  5. Austrian Science Fund (FWF) [P23652, P22608] Funding Source: Austrian Science Fund (FWF)

向作者/读者索取更多资源

The oncogenic bHLH-LZ transcription factor Myc forms binary complexes with its binding partner Max. These and other bHLH-LZ-based protein-protein interactions (PPI) in the Myc-Max network are essential for the physiological and oncogenic activities of Myc. We have generated a genetically determined and highly specific protein-fragment complementation assay based on Renilla luciferase to analyze the dynamic interplay of bHLH-LZ transcription factors Myc, Max, and Mxd1 in vivo. We also applied this PPI reporter to quantify alterations of nuclear Myc-Max complexes in response to mutational events, competitive binding by the transcriptional repressor Mxd1, or perturbations by small-molecule Myc inhibitors, including recently identified potent PPI inhibitors from a Krohnke pyridine library. We show that the specificity of Myc-Max PPI reduction by the pyridine inhibitors directly correlates with their efficient and highly specific potential to interfere with the proliferation of human and avian tumor cells displaying deregulated Myc expression. In a direct comparison with known Myc inhibitors using human and avian cell systems, the pyridine compounds reveal a unique inhibitory potential even at sub-micromolar concentrations combined with remarkable specificity for the inhibition of Myc-driven tumor cell proliferation. Furthermore, we show in direct comparisons using defined avian cell systems that different Max PPI profiles for the variant members of the Myc protein family (c-Myc, v-Myc, N-Myc, L-Myc) correlate with their diverse oncogenic potential and their variable sensitivity to the novel pyridine inhibitors.

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