Updated protein domain annotation of the PARP protein family sheds new light on biological function

Author:

Suskiewicz Marcin J1ORCID,Munnur Deeksha2,Strømland Øyvind23,Yang Ji-Chun4,Easton Laura E4,Chatrin Chatrin2,Zhu Kang2,Baretić Domagoj2,Goffinont Stéphane1,Schuller Marion2,Wu Wing-Fung4,Elkins Jonathan M5,Ahel Dragana2,Sanyal Sumana2,Neuhaus David4ORCID,Ahel Ivan2ORCID

Affiliation:

1. Centre de Biophysique Moléculaire , CNRS UPR 4301, Orléans , France

2. Sir William Dunn School of Pathology, University of Oxford , Oxford OX1 3RE, UK

3. Department of Biomedicine, University of Bergen , Bergen , Norway

4. MRC Laboratory of Molecular Biology, Francis Crick Avenue , Cambridge CB2 0QH, UK

5. Centre for Medicines Discovery, University of Oxford , Oxford OX3 7DQ, UK

Abstract

Abstract AlphaFold2 and related computational tools have greatly aided studies of structural biology through their ability to accurately predict protein structures. In the present work, we explored AF2 structural models of the 17 canonical members of the human PARP protein family and supplemented this analysis with new experiments and an overview of recent published data. PARP proteins are typically involved in the modification of proteins and nucleic acids through mono or poly(ADP-ribosyl)ation, but this function can be modulated by the presence of various auxiliary protein domains. Our analysis provides a comprehensive view of the structured domains and long intrinsically disordered regions within human PARPs, offering a revised basis for understanding the function of these proteins. Among other functional insights, the study provides a model of PARP1 domain dynamics in the DNA-free and DNA-bound states and enhances the connection between ADP-ribosylation and RNA biology and between ADP-ribosylation and ubiquitin-like modifications by predicting putative RNA-binding domains and E2-related RWD domains in certain PARPs. In line with the bioinformatic analysis, we demonstrate for the first time PARP14’s RNA-binding capability and RNA ADP-ribosylation activity in vitro. While our insights align with existing experimental data and are probably accurate, they need further validation through experiments.

Funder

Wellcome Trust

Oxford University

Biotechnology and Biological Sciences Research Council

Ovarian Cancer Research Alliance

Research Council of Norway

European Research Council

la Ligue contre le Cancer

National Centre for Scientific Research

Medical Research Council

Health and Medical Research Fund

Publisher

Oxford University Press (OUP)

Subject

Genetics

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