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Paracrine ADP Ribosyl Cyclase-Mediated Regulation of Biological Processes

ADP-ribosyl cyclases (ADPRCs) catalyze the synthesis of the Ca(2+)-active second messengers Cyclic ADP-ribose (cADPR) and ADP-ribose (ADPR) from NAD(+) as well as nicotinic acid adenine dinucleotide phosphate (NAADP(+)) from NADP(+). The best characterized ADPRC in mammals is CD38, a single-pass tra...

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Autores principales: Astigiano, Cecilia, Benzi, Andrea, Laugieri, Maria Elena, Piacente, Francesco, Sturla, Laura, Guida, Lucrezia, Bruzzone, Santina, De Flora, Antonio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9454491/
https://www.ncbi.nlm.nih.gov/pubmed/36078044
http://dx.doi.org/10.3390/cells11172637
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author Astigiano, Cecilia
Benzi, Andrea
Laugieri, Maria Elena
Piacente, Francesco
Sturla, Laura
Guida, Lucrezia
Bruzzone, Santina
De Flora, Antonio
author_facet Astigiano, Cecilia
Benzi, Andrea
Laugieri, Maria Elena
Piacente, Francesco
Sturla, Laura
Guida, Lucrezia
Bruzzone, Santina
De Flora, Antonio
author_sort Astigiano, Cecilia
collection PubMed
description ADP-ribosyl cyclases (ADPRCs) catalyze the synthesis of the Ca(2+)-active second messengers Cyclic ADP-ribose (cADPR) and ADP-ribose (ADPR) from NAD(+) as well as nicotinic acid adenine dinucleotide phosphate (NAADP(+)) from NADP(+). The best characterized ADPRC in mammals is CD38, a single-pass transmembrane protein with two opposite membrane orientations. The first identified form, type II CD38, is a glycosylated ectoenzyme, while type III CD38 has its active site in the cytosol. The ectoenzymatic nature of type II CD38 raised long ago the question of a topological paradox concerning the access of the intracellular NAD(+) substrate to the extracellular active site and of extracellular cADPR product to its intracellular receptors, ryanodine (RyR) channels. Two different transporters, equilibrative connexin 43 (Cx43) hemichannels for NAD(+) and concentrative nucleoside transporters (CNTs) for cADPR, proved to mediate cell-autonomous trafficking of both nucleotides. Here, we discussed how type II CD38, Cx43 and CNTs also play a role in mediating several paracrine processes where an ADPRC(+) cell supplies a neighboring CNT-and RyR-expressing cell with cADPR. Recently, type II CD38 was shown to start an ectoenzymatic sequence of reactions from NAD(+)/ADPR to the strong immunosuppressant adenosine; this paracrine effect represents a major mechanism of acquired resistance of several tumors to immune checkpoint therapy.
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spelling pubmed-94544912022-09-09 Paracrine ADP Ribosyl Cyclase-Mediated Regulation of Biological Processes Astigiano, Cecilia Benzi, Andrea Laugieri, Maria Elena Piacente, Francesco Sturla, Laura Guida, Lucrezia Bruzzone, Santina De Flora, Antonio Cells Review ADP-ribosyl cyclases (ADPRCs) catalyze the synthesis of the Ca(2+)-active second messengers Cyclic ADP-ribose (cADPR) and ADP-ribose (ADPR) from NAD(+) as well as nicotinic acid adenine dinucleotide phosphate (NAADP(+)) from NADP(+). The best characterized ADPRC in mammals is CD38, a single-pass transmembrane protein with two opposite membrane orientations. The first identified form, type II CD38, is a glycosylated ectoenzyme, while type III CD38 has its active site in the cytosol. The ectoenzymatic nature of type II CD38 raised long ago the question of a topological paradox concerning the access of the intracellular NAD(+) substrate to the extracellular active site and of extracellular cADPR product to its intracellular receptors, ryanodine (RyR) channels. Two different transporters, equilibrative connexin 43 (Cx43) hemichannels for NAD(+) and concentrative nucleoside transporters (CNTs) for cADPR, proved to mediate cell-autonomous trafficking of both nucleotides. Here, we discussed how type II CD38, Cx43 and CNTs also play a role in mediating several paracrine processes where an ADPRC(+) cell supplies a neighboring CNT-and RyR-expressing cell with cADPR. Recently, type II CD38 was shown to start an ectoenzymatic sequence of reactions from NAD(+)/ADPR to the strong immunosuppressant adenosine; this paracrine effect represents a major mechanism of acquired resistance of several tumors to immune checkpoint therapy. MDPI 2022-08-24 /pmc/articles/PMC9454491/ /pubmed/36078044 http://dx.doi.org/10.3390/cells11172637 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Review
Astigiano, Cecilia
Benzi, Andrea
Laugieri, Maria Elena
Piacente, Francesco
Sturla, Laura
Guida, Lucrezia
Bruzzone, Santina
De Flora, Antonio
Paracrine ADP Ribosyl Cyclase-Mediated Regulation of Biological Processes
title Paracrine ADP Ribosyl Cyclase-Mediated Regulation of Biological Processes
title_full Paracrine ADP Ribosyl Cyclase-Mediated Regulation of Biological Processes
title_fullStr Paracrine ADP Ribosyl Cyclase-Mediated Regulation of Biological Processes
title_full_unstemmed Paracrine ADP Ribosyl Cyclase-Mediated Regulation of Biological Processes
title_short Paracrine ADP Ribosyl Cyclase-Mediated Regulation of Biological Processes
title_sort paracrine adp ribosyl cyclase-mediated regulation of biological processes
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9454491/
https://www.ncbi.nlm.nih.gov/pubmed/36078044
http://dx.doi.org/10.3390/cells11172637
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