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Design and Synthesis of Selective Phosphodiesterase 4D (PDE4D) Allosteric Inhibitors for the Treatment of Fragile X Syndrome and Other Brain Disorders

  • Mark E. Gurney
  • , Richard A. Nugent
  • , Xuesheng Mo
  • , Janice A. Sindac
  • , Timothy J. Hagen
  • , David Fox
  • , James M. O'Donnell
  • , Chong Zhang
  • , Ying Xu
  • , Han Ting Zhang
  • , Vincent E. Groppi
  • , Marc Bailie
  • , Ronald E. White
  • , Donna L. Romero
  • , A. Samuel Vellekoop
  • , Joel R. Walker
  • , Matthew D. Surman
  • , Lei Zhu
  • , Robert F. Campbell
  • Tetra Discovery Partners
  • Northern Illinois University
  • Beryllium Discovery Corp.
  • UCB Pharma
  • SUNY Buffalo
  • West Virginia University
  • University of Michigan, Ann Arbor
  • INDS Inc.
  • White Global Pharma Consultants
  • Pharma-Vation Consulting LLC
  • Albany Molecular Research, Inc.
  • Walter Reed Army Institute of Research

Research output: Contribution to journalArticlepeer-review

66 Scopus citations

Abstract

Novel pyridine- and pyrimidine-based allosteric inhibitors are reported that achieve PDE4D subtype selectivity through recognition of a single amino acid difference on a key regulatory domain, known as UCR2, that opens and closes over the catalytic site for cAMP hydrolysis. The design and optimization of lead compounds was based on iterative analysis of X-ray crystal structures combined with metabolite identification. Selectivity for the activated, dimeric form of PDE4D provided potent memory enhancing effects in a mouse model of novel object recognition with improved tolerability and reduced vascular toxicity over earlier PDE4 inhibitors that lack subtype selectivity. The lead compound, 28 (BPN14770), has entered midstage, human phase 2 clinical trials for the treatment of Fragile X Syndrome.

Original languageEnglish
Pages (from-to)4884-4901
Number of pages18
JournalJournal of Medicinal Chemistry
Volume62
Issue number10
DOIs
StatePublished - May 23 2019

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