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From polypharmacology to target specificity: the case of PARP inhibitors.

Abstract
Poly(ADP-ribose)polymerases (PARPs) catalyze a post-transcriptional modification of proteins, consisting in the attachment of mono, oligo or poly ADP-ribose units from NAD+ to specific polar residues of target proteins. The scientific interest in members of this superfamily of enzymes is continuously growing since they have been implicated in a range of diseases including stroke, cardiac ischemia, cancer, inflammation and diabetes. Despite some inhibitors of PARP-1, the founder member of the superfamily, have advanced in clinical trials for cancer therapy, and other members of PARPs have recently been proposed as interesting drug targets, challenges exist in understanding the polypharmacology of current PARP inhibitors as well as developing highly selective chemical tools to unravel specific functions of each member of the superfamily. Beginning with an overview on the molecular aspects that affect polypharmacology, in this article we discuss how these may have an impact on PARP research and drug discovery. Then, we review the most selective PARP inhibitors hitherto reported in literature, giving an update on the molecular aspects at the basis of selective PARP inhibitor design. Finally, some outlooks on current issues and future directions in this field of research are also provided.
AuthorsParide Liscio, Emidio Camaioni, Andrea Carotti, Roberto Pellicciari, Antonio Macchiarulo
JournalCurrent topics in medicinal chemistry (Curr Top Med Chem) Vol. 13 Issue 23 Pg. 2939-54 ( 2013) ISSN: 1873-4294 [Electronic] United Arab Emirates
PMID24171773 (Publication Type: Journal Article, Review)
Chemical References
  • Enzyme Inhibitors
  • Poly(ADP-ribose) Polymerase Inhibitors
  • Poly(ADP-ribose) Polymerases
Topics
  • Animals
  • Drug Design
  • Enzyme Inhibitors (chemical synthesis, chemistry, pharmacology, therapeutic use)
  • Humans
  • Models, Molecular
  • Molecular Structure
  • Poly(ADP-ribose) Polymerase Inhibitors
  • Poly(ADP-ribose) Polymerases (metabolism)
  • Polypharmacology
  • Substrate Specificity (drug effects)

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