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Targeting N-Myc in neuroblastoma with selective Aurora kinase A degraders

  • Jian Tang
  • , Ramkumar Moorthy
  • , Laura E. Hirsch
  • , Özlem Demir
  • , Zachary D. Baker
  • , Jordan A. Naumann
  • , Katherine F.M. Jones
  • , Michael J. Grillo
  • , Ella S. Haefner
  • , Ke Shi
  • , Michaella J. Levy
  • , Harshita B. Gupta
  • , Hideki Aihara
  • , Reuben S. Harris
  • , Rommie E. Amaro
  • , Nicholas M. Levinson
  • , Daniel A. Harki

Research output: Contribution to journalArticlepeer-review

Abstract

The N-Myc transcription factor, encoded by MYCN, is a mechanistically validated, yet challenging, target for neuroblastoma (NB) therapy development. In normal neuronal progenitors, N-Myc undergoes rapid degradation, while, in MYCN-amplified NB cells, Aurora kinase A (Aurora-A) binds to and stabilizes N-Myc, resulting in elevated protein levels. Here, we demonstrate that targeted protein degradation of Aurora-A decreases N-Myc levels. A potent Aurora-A degrader, HLB-0532259 (compound 4), was developed from an Aurora-A-binding ligand that engages the Aurora-A/N-Myc complex. HLB-0532259 promotes the degradation of Aurora-A, which elicits concomitant N-Myc degradation, with nanomolar potency and excellent selectivity. HLB-0532259 surpasses the cellular efficacy of established allosteric Aurora-A inhibitors, exhibits favorable pharmacokinetic properties, and elicits tumor reduction in a murine xenograft NB model. This study broadly delineates a strategy for targeting “undruggable” proteins that are reliant on accessory proteins for cellular stabilization.

Original languageEnglish (US)
Pages (from-to)352-362.e10
JournalCell Chemical Biology
Volume32
Issue number2
DOIs
StatePublished - Feb 20 2025

Keywords

  • Aurora kinase A
  • MYCN
  • N-Myc
  • PROTAC
  • TPD
  • neuroblastoma
  • targeted protein degradation
  • transcription factor

ASJC Scopus subject areas

  • Biochemistry
  • Molecular Medicine
  • Molecular Biology
  • Pharmacology
  • Drug Discovery
  • Clinical Biochemistry

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