| Literature DB >> 25114221 |
Jonathan R Hart1, Amanda L Garner2, Jing Yu2, Yoshihiro Ito1, Minghao Sun1, Lynn Ueno1, Jin-Kyu Rhee2, Michael M Baksh2, Eduard Stefan3, Markus Hartl3, Klaus Bister3, Peter K Vogt4, Kim D Janda5.
Abstract
In a fluorescence polarization screen for the MYC-MAX interaction, we have identified a novel small-molecule inhibitor of MYC, KJ-Pyr-9, from a Kröhnke pyridine library. The Kd of KJ-Pyr-9 for MYC in vitro is 6.5 ± 1.0 nM, as determined by backscattering interferometry; KJ-Pyr-9 also interferes with MYC-MAX complex formation in the cell, as shown in a protein fragment complementation assay. KJ-Pyr-9 specifically inhibits MYC-induced oncogenic transformation in cell culture; it has no or only weak effects on the oncogenic activity of several unrelated oncoproteins. KJ-Pyr-9 preferentially interferes with the proliferation of MYC-overexpressing human and avian cells and specifically reduces the MYC-driven transcriptional signature. In vivo, KJ-Pyr-9 effectively blocks the growth of a xenotransplant of MYC-amplified human cancer cells.Entities:
Keywords: combinatorial library; gene signature; protein–protein interactions; transcriptional control; xenograft
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Year: 2014 PMID: 25114221 PMCID: PMC4151726 DOI: 10.1073/pnas.1319488111
Source DB: PubMed Journal: Proc Natl Acad Sci U S A ISSN: 0027-8424 Impact factor: 11.205