Structural basis of N-Myc binding by Aurora-A and its destabilization by kinase inhibitors.

Richards, Mark W; Burgess, Selena G; Poon, Evon; Carstensen, Anne; Eilers, Martin; Chesler, Louis; Bayliss, Richard · Proc Natl Acad Sci U S A · 2016

basic_science · Level V

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Abstract

Myc family proteins promote cancer by inducing widespread changes in gene expression. Their rapid turnover by the ubiquitin-proteasome pathway is regulated through phosphorylation of Myc Box I and ubiquitination by the E3 ubiquitin ligase SCF<sup>FbxW7</sup> However, N-Myc protein (the product of the MYCN oncogene) is stabilized in neuroblastoma by the protein kinase Aurora-A in a manner that is sensitive to certain Aurora-A-selective inhibitors. Here we identify a direct interaction between the catalytic domain of Aurora-A and a site flanking Myc Box I that also binds SCF<sup>FbxW7</sup> We determined the crystal structure of the complex between Aurora-A and this region of N-Myc to 1.72-Å resolution. The structure indicates that the conformation of Aurora-A induced by compounds such as alisertib and CD532 is not compatible with the binding of N-Myc, explaining the activity of these compounds in neuroblastoma cells and providing a rational basis for the design of cancer therapeutics optimized for destabilization of the complex. We also propose a model for the stabilization mechanism in which binding to Aurora-A alters how N-Myc interacts with SCF<sup>FbxW7</sup> to disfavor the generation of Lys48-linked polyubiquitin chains.

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