| Literature DB >> 25175806 |
William Clay Gustafson1, Justin Gabriel Meyerowitz2, Erin A Nekritz1, Justin Chen3, Cyril Benes4, Elise Charron5, Erin F Simonds6, Robert Seeger7, Katherine K Matthay1, Nicholas T Hertz8, Martin Eilers9, Kevan M Shokat10, William A Weiss11.
Abstract
MYC proteins are major drivers of cancer yet are considered undruggable because their DNA binding domains are composed of two extended alpha helices with no apparent surfaces for small-molecule binding. Proteolytic degradation of MYCN protein is regulated in part by a kinase-independent function of Aurora A. We describe a class of inhibitors that disrupts the native conformation of Aurora A and drives the degradation of MYCN protein across MYCN-driven cancers. Comparison of cocrystal structures with structure-activity relationships across multiple inhibitors and chemotypes, coupled with mechanistic studies and biochemical assays, delineates an Aurora A conformation-specific effect on proteolytic degradation of MYCN, rather than simple nanomolar-level inhibition of Aurora A kinase activity.Entities:
Mesh:
Substances:
Year: 2014 PMID: 25175806 PMCID: PMC4160413 DOI: 10.1016/j.ccr.2014.07.015
Source DB: PubMed Journal: Cancer Cell ISSN: 1535-6108 Impact factor: 31.743