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ADP-ribosyltransferases, an update on function and nomenclature

ADP-ribosylation, a modification of proteins, nucleic acids, and metabolites, confers broad functions, including roles in stress responses elicited, for example, by DNA damage and viral infection and is involved in intra-and extracellular signaling, chromatin and transcriptional regulation, protein...

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Autores principales: Lüscher, Bernhard, Ahel, Ivan, Altmeyer, Matthias, Ashworth, Alan, Bai, Peter, Chang, Paul, Cohen, Michael, Corda, Daniela, Dantzer, Françoise, Daugherty, Matthew D., Dawson, Ted M., Dawson, Valina L., Deindl, Sebastian, Fehr, Anthony R., Feijs, Karla L. H., Filippov, Dmitri V., Gagné, Jean-Philippe, Grimaldi, Giovanna, Guettler, Sebastian, Hoch, Nicolas C., Hottiger, Michael O., Korn, Patricia, Kraus, W. Lee, Ladurner, Andreas, Lehtiö, Lari, Leung, Anthony K. L., Lord, Christopher J., Mangerich, Aswin, Matic, Ivan, Matthews, Jason, Moldovan, George-Lucian, Moss, Joel, Natoli, Gioacchino, Nielsen, Michael L., Niepel, Mario, Nolte, Friedrich, Pascal, John, Paschal, Bryce M., Pawłowski, Krzysztof, Poirier, Guy G., Smith, Susan, Timinszky, Gyula, Wang, Zhao-Qi, Yélamos, José, Yu, Xiaochun, Zaja, Roko, Ziegler, Mathias
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9027952/
https://www.ncbi.nlm.nih.gov/pubmed/34323016
http://dx.doi.org/10.1111/febs.16142
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author Lüscher, Bernhard
Ahel, Ivan
Altmeyer, Matthias
Ashworth, Alan
Bai, Peter
Chang, Paul
Cohen, Michael
Corda, Daniela
Dantzer, Françoise
Daugherty, Matthew D.
Dawson, Ted M.
Dawson, Valina L.
Deindl, Sebastian
Fehr, Anthony R.
Feijs, Karla L. H.
Filippov, Dmitri V.
Gagné, Jean-Philippe
Grimaldi, Giovanna
Guettler, Sebastian
Hoch, Nicolas C.
Hottiger, Michael O.
Korn, Patricia
Kraus, W. Lee
Ladurner, Andreas
Lehtiö, Lari
Leung, Anthony K. L.
Lord, Christopher J.
Mangerich, Aswin
Matic, Ivan
Matthews, Jason
Moldovan, George-Lucian
Moss, Joel
Natoli, Gioacchino
Nielsen, Michael L.
Niepel, Mario
Nolte, Friedrich
Pascal, John
Paschal, Bryce M.
Pawłowski, Krzysztof
Poirier, Guy G.
Smith, Susan
Timinszky, Gyula
Wang, Zhao-Qi
Yélamos, José
Yu, Xiaochun
Zaja, Roko
Ziegler, Mathias
author_facet Lüscher, Bernhard
Ahel, Ivan
Altmeyer, Matthias
Ashworth, Alan
Bai, Peter
Chang, Paul
Cohen, Michael
Corda, Daniela
Dantzer, Françoise
Daugherty, Matthew D.
Dawson, Ted M.
Dawson, Valina L.
Deindl, Sebastian
Fehr, Anthony R.
Feijs, Karla L. H.
Filippov, Dmitri V.
Gagné, Jean-Philippe
Grimaldi, Giovanna
Guettler, Sebastian
Hoch, Nicolas C.
Hottiger, Michael O.
Korn, Patricia
Kraus, W. Lee
Ladurner, Andreas
Lehtiö, Lari
Leung, Anthony K. L.
Lord, Christopher J.
Mangerich, Aswin
Matic, Ivan
Matthews, Jason
Moldovan, George-Lucian
Moss, Joel
Natoli, Gioacchino
Nielsen, Michael L.
Niepel, Mario
Nolte, Friedrich
Pascal, John
Paschal, Bryce M.
Pawłowski, Krzysztof
Poirier, Guy G.
Smith, Susan
Timinszky, Gyula
Wang, Zhao-Qi
Yélamos, José
Yu, Xiaochun
Zaja, Roko
Ziegler, Mathias
author_sort Lüscher, Bernhard
collection PubMed
description ADP-ribosylation, a modification of proteins, nucleic acids, and metabolites, confers broad functions, including roles in stress responses elicited, for example, by DNA damage and viral infection and is involved in intra-and extracellular signaling, chromatin and transcriptional regulation, protein biosynthesis, and cell death. ADP-ribosylation is catalyzed by ADP-ribosyltransferases (ARTs), which transfer ADP-ribose from NAD(+) onto substrates. The modification, which occurs as mono- or poly-ADP-ribosylation, is reversible due to the action of different ADP-ribosylhydrolases. Importantly, inhibitors of ARTs are approved or are being developed for clinical use. Moreover, ADP-ribosylhydrolases are being assessed as therapeutic targets, foremost as antiviral drugs and for oncological indications. Due to the development of novel reagents and major technological advances that allow the study of ADP-ribosylation in unprecedented detail, an increasing number of cellular processes and pathways are being identified that are regulated by ADP-ribosylation. In addition, characterization of biochemical and structural aspects of the ARTs and their catalytic activities have expanded our understanding of this protein family. This increased knowledge requires that a common nomenclature be used to describe the relevant enzymes. Therefore, in this viewpoint, we propose an updated and broadly supported nomenclature for mammalian ARTs that will facilitate future discussions when addressing the biochemistry and biology of ADP-ribosylation. This is combined with a brief description of the main functions of mammalian ARTs to illustrate the increasing diversity of mono- and poly-ADP-ribose mediated cellular processes.
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spelling pubmed-90279522022-12-08 ADP-ribosyltransferases, an update on function and nomenclature Lüscher, Bernhard Ahel, Ivan Altmeyer, Matthias Ashworth, Alan Bai, Peter Chang, Paul Cohen, Michael Corda, Daniela Dantzer, Françoise Daugherty, Matthew D. Dawson, Ted M. Dawson, Valina L. Deindl, Sebastian Fehr, Anthony R. Feijs, Karla L. H. Filippov, Dmitri V. Gagné, Jean-Philippe Grimaldi, Giovanna Guettler, Sebastian Hoch, Nicolas C. Hottiger, Michael O. Korn, Patricia Kraus, W. Lee Ladurner, Andreas Lehtiö, Lari Leung, Anthony K. L. Lord, Christopher J. Mangerich, Aswin Matic, Ivan Matthews, Jason Moldovan, George-Lucian Moss, Joel Natoli, Gioacchino Nielsen, Michael L. Niepel, Mario Nolte, Friedrich Pascal, John Paschal, Bryce M. Pawłowski, Krzysztof Poirier, Guy G. Smith, Susan Timinszky, Gyula Wang, Zhao-Qi Yélamos, José Yu, Xiaochun Zaja, Roko Ziegler, Mathias FEBS J Article ADP-ribosylation, a modification of proteins, nucleic acids, and metabolites, confers broad functions, including roles in stress responses elicited, for example, by DNA damage and viral infection and is involved in intra-and extracellular signaling, chromatin and transcriptional regulation, protein biosynthesis, and cell death. ADP-ribosylation is catalyzed by ADP-ribosyltransferases (ARTs), which transfer ADP-ribose from NAD(+) onto substrates. The modification, which occurs as mono- or poly-ADP-ribosylation, is reversible due to the action of different ADP-ribosylhydrolases. Importantly, inhibitors of ARTs are approved or are being developed for clinical use. Moreover, ADP-ribosylhydrolases are being assessed as therapeutic targets, foremost as antiviral drugs and for oncological indications. Due to the development of novel reagents and major technological advances that allow the study of ADP-ribosylation in unprecedented detail, an increasing number of cellular processes and pathways are being identified that are regulated by ADP-ribosylation. In addition, characterization of biochemical and structural aspects of the ARTs and their catalytic activities have expanded our understanding of this protein family. This increased knowledge requires that a common nomenclature be used to describe the relevant enzymes. Therefore, in this viewpoint, we propose an updated and broadly supported nomenclature for mammalian ARTs that will facilitate future discussions when addressing the biochemistry and biology of ADP-ribosylation. This is combined with a brief description of the main functions of mammalian ARTs to illustrate the increasing diversity of mono- and poly-ADP-ribose mediated cellular processes. 2022-12 2021-09-13 /pmc/articles/PMC9027952/ /pubmed/34323016 http://dx.doi.org/10.1111/febs.16142 Text en https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non-commercial and no modifications or adaptations are made.
spellingShingle Article
Lüscher, Bernhard
Ahel, Ivan
Altmeyer, Matthias
Ashworth, Alan
Bai, Peter
Chang, Paul
Cohen, Michael
Corda, Daniela
Dantzer, Françoise
Daugherty, Matthew D.
Dawson, Ted M.
Dawson, Valina L.
Deindl, Sebastian
Fehr, Anthony R.
Feijs, Karla L. H.
Filippov, Dmitri V.
Gagné, Jean-Philippe
Grimaldi, Giovanna
Guettler, Sebastian
Hoch, Nicolas C.
Hottiger, Michael O.
Korn, Patricia
Kraus, W. Lee
Ladurner, Andreas
Lehtiö, Lari
Leung, Anthony K. L.
Lord, Christopher J.
Mangerich, Aswin
Matic, Ivan
Matthews, Jason
Moldovan, George-Lucian
Moss, Joel
Natoli, Gioacchino
Nielsen, Michael L.
Niepel, Mario
Nolte, Friedrich
Pascal, John
Paschal, Bryce M.
Pawłowski, Krzysztof
Poirier, Guy G.
Smith, Susan
Timinszky, Gyula
Wang, Zhao-Qi
Yélamos, José
Yu, Xiaochun
Zaja, Roko
Ziegler, Mathias
ADP-ribosyltransferases, an update on function and nomenclature
title ADP-ribosyltransferases, an update on function and nomenclature
title_full ADP-ribosyltransferases, an update on function and nomenclature
title_fullStr ADP-ribosyltransferases, an update on function and nomenclature
title_full_unstemmed ADP-ribosyltransferases, an update on function and nomenclature
title_short ADP-ribosyltransferases, an update on function and nomenclature
title_sort adp-ribosyltransferases, an update on function and nomenclature
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9027952/
https://www.ncbi.nlm.nih.gov/pubmed/34323016
http://dx.doi.org/10.1111/febs.16142
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