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Updated: Nov 29, 2025

In Vitro Transcription Assays and Their Application in Drug Discovery
Published on: September 20, 2016
Design, synthesis and evaluation of potential inhibitors for poly(ADP-ribose) polymerase members 1 and 14
Caleb M Kam1, Amanda L Tauber1, Stephan M Levonis1
1Faculty of Health Sciences & Medicine, Bond University, Robina, QLD 4229, Australia.
Abstract:
Poly(ADP-ribose) polymerase (PARP) members PARP1 and PARP14 belong to an 18-member superfamily of post-translational modifying enzymes. A library of 9 novel non-NAD analog amine compounds was designed, synthesized and evaluated for inhibitory activity against PARP1 and PARP14. Both in silico studies and in vitro assays identified compound 2 as a potential PARP1 inhibitor, inhibiting activity by 93 ± 2% (PARP14 inhibition: 0 ± 6%), and 7 as a potential PARP14 inhibitor, inhibiting activity by 91 ± 2% (PARP1 inhibition: 18 ± 4%), at 10-μm concentration. Key in silico interactions with TYR907 in PARP1 and TYR1620 and TYR1646 in PARP14 have been identified. Compound 2 and compound 7 have been identified as potential leads for the development of selective PARP inhibitors.
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