Literature DB >> 23485441

Activity-based assay for human mono-ADP-ribosyltransferases ARTD7/PARP15 and ARTD10/PARP10 aimed at screening and profiling inhibitors.

Harikanth Venkannagari1, Adyary Fallarero, Karla L H Feijs, Bernhard Lüscher, Lari Lehtiö.   

Abstract

Poly(ADP-ribose) polymerases (PARPs) or diphtheria toxin like ADP-ribosyl transferases (ARTDs) are enzymes that catalyze the covalent modification of proteins by attachment of ADP-ribose units to the target amino acid residues or to the growing chain of ADP-ribose. A subclass of the ARTD superfamily consists of mono-ADP-ribosyl transferases that are thought to modify themselves and other substrate proteins by covalently adding only a single ADP-ribose moiety to the target. Many of the ARTD enzymes are either established or potential drug targets and a functional activity assay for them will be a valuable tool to identify selective inhibitors for each enzyme. Existing assays are not directly applicable for screening of inhibitors due to the different nature of the reaction and different target molecules. We modified and applied a fluorescence-based assay previously described for PARP1/ARTD1 and tankyrase/ARTD5 for screening of PARP10/ARTD10 and PARP15/ARTD7 inhibitors. The assay measures the amount of NAD(+) present after chemically converting it to a fluorescent analog. We demonstrate that by using an excess of a recombinant acceptor protein the performance of the activity-based assay is excellent for screening of compound libraries. The assay is homogenous and cost effective, making it possible to test relatively large compound libraries. This method can be used to screen inhibitors of mono-ARTDs and profile inhibitors of the enzyme class. The assay was optimized for ARTD10 and ARTD7, but it can be directly applied to other mono-ARTDs of the ARTD superfamily. Profiling of known ARTD inhibitors against ARTD10 and ARTD7 in a validatory screening identified the best inhibitors with submicromolar potencies. Only few of the tested ARTD inhibitors were potent, implicating that there is a need to screen new compound scaffolds. This is needed to create small molecules that could serve as biological probes and potential starting points for drug discovery projects against mono-ARTDs.
Copyright © 2013 Elsevier B.V. All rights reserved.

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Year:  2013        PMID: 23485441     DOI: 10.1016/j.ejps.2013.02.012

Source DB:  PubMed          Journal:  Eur J Pharm Sci        ISSN: 0928-0987            Impact factor:   4.384


  16 in total

1.  A Clickable Aminooxy Probe for Monitoring Cellular ADP-Ribosylation.

Authors:  Rory K Morgan; Michael S Cohen
Journal:  ACS Chem Biol       Date:  2015-05-27       Impact factor: 5.100

2.  Protein engineering approach to enhance activity assays of mono-ADP-ribosyltransferases through proximity.

Authors:  Albert Galera-Prat; Juho Alaviuhkola; Heli I Alanen; Lari Lehtiö
Journal:  Protein Eng Des Sel       Date:  2022-02-17       Impact factor: 1.952

Review 3.  Medicinal Chemistry Perspective on Targeting Mono-ADP-Ribosylating PARPs with Small Molecules.

Authors:  Maria Giulia Nizi; Mirko M Maksimainen; Lari Lehtiö; Oriana Tabarrini
Journal:  J Med Chem       Date:  2022-05-24       Impact factor: 8.039

4.  Selective inhibition of PARP10 using a chemical genetics strategy.

Authors:  Rory K Morgan; Ian Carter-O'Connell; Michael S Cohen
Journal:  Bioorg Med Chem Lett       Date:  2015-07-17       Impact factor: 2.823

5.  A macrodomain-linked immunosorbent assay (MLISA) for mono-ADP-ribosyltransferases.

Authors:  Jingwen Chen; Albert T Lam; Yong Zhang
Journal:  Anal Biochem       Date:  2017-12-13       Impact factor: 3.365

6.  Epigallocatechin-3-gallate enhances ER stress-induced cancer cell apoptosis by directly targeting PARP16 activity.

Authors:  Juanjuan Wang; Chenggang Zhu; Dan Song; Ruiqi Xia; Wenbo Yu; Yongjun Dang; Yiyan Fei; Long Yu; Jiaxue Wu
Journal:  Cell Death Discov       Date:  2017-07-10

7.  Structural basis and selectivity of tankyrase inhibition by a Wnt signaling inhibitor WIKI4.

Authors:  Teemu Haikarainen; Harikanth Venkannagari; Mohit Narwal; Ezeogo Obaji; Hao-Wei Lee; Yves Nkizinkiko; Lari Lehtiö
Journal:  PLoS One       Date:  2013-06-06       Impact factor: 3.240

Review 8.  ADP-ribosylation: activation, recognition, and removal.

Authors:  Nan Li; Junjie Chen
Journal:  Mol Cells       Date:  2014-01-27       Impact factor: 5.034

9.  Proximal ADP-ribose Hydrolysis in Trypanosomatids is Catalyzed by a Macrodomain.

Authors:  Teemu Haikarainen; Lari Lehtiö
Journal:  Sci Rep       Date:  2016-04-11       Impact factor: 4.379

10.  2-Phenylquinazolinones as dual-activity tankyrase-kinase inhibitors.

Authors:  Yves Nkizinkiko; Jenny Desantis; Jarkko Koivunen; Teemu Haikarainen; Sudarshan Murthy; Luca Sancineto; Serena Massari; Federica Ianni; Ezeogo Obaji; Maria I Loza; Taina Pihlajaniemi; Jose Brea; Oriana Tabarrini; Lari Lehtiö
Journal:  Sci Rep       Date:  2018-01-26       Impact factor: 4.379

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