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Polyamine Oxidase Is Involved in Spermidine Reduction of Transglutaminase Type 2-Catalyzed βH-Crystallins Polymerization in Calcium-Induced Experimental Cataract

In an in vitro Ca(2+)-induced cataract model, the progression of opacification is paralleled by a rapid decrease of the endogenous levels of spermidine (SPD) and an increase of transglutaminase type 2 (TG2, EC 2.3.2.13)-catalyzed lens crystallins cross-linking by protein-bound N(1)-N(8)-bis(γ-glutam...

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Autores principales: Mischiati, Carlo, Feriotto, Giordana, Tabolacci, Claudio, Domenici, Fabio, Melino, Sonia, Borromeo, Ilaria, Forni, Cinzia, De Martino, Angelo, Beninati, Simone
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7432200/
https://www.ncbi.nlm.nih.gov/pubmed/32751462
http://dx.doi.org/10.3390/ijms21155427
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author Mischiati, Carlo
Feriotto, Giordana
Tabolacci, Claudio
Domenici, Fabio
Melino, Sonia
Borromeo, Ilaria
Forni, Cinzia
De Martino, Angelo
Beninati, Simone
author_facet Mischiati, Carlo
Feriotto, Giordana
Tabolacci, Claudio
Domenici, Fabio
Melino, Sonia
Borromeo, Ilaria
Forni, Cinzia
De Martino, Angelo
Beninati, Simone
author_sort Mischiati, Carlo
collection PubMed
description In an in vitro Ca(2+)-induced cataract model, the progression of opacification is paralleled by a rapid decrease of the endogenous levels of spermidine (SPD) and an increase of transglutaminase type 2 (TG2, EC 2.3.2.13)-catalyzed lens crystallins cross-linking by protein-bound N(1)-N(8)-bis(γ-glutamyl) SPD. This pattern was reversed adding exogenous SPD to the incubation resulting in a delayed loss of transparency of the rabbit lens. The present report shows evidence on the main incorporation of SPD by the catalytic activity of TG2, toward βH-crystallins and in particular to the βB2- and mostly in βB3-crystallins. The increase of endogenous SPD in the cultured rabbit lens showed the activation of a flavin adenine dinucleotide (FAD)-dependent polyamine oxidases (PAO EC 1.5.3.11). As it is known that FAD-PAO degrades the N(8)-terminal reactive portion of N(1)-mono(γ-glutamyl) SPD, the protein-bound N(8)-mono(γ-glutamyl) SPD was found the mainly available derivative for the potential formation of βB3-crystallins cross-links by protein-bound N(1)-N(8)-bis(γ-glutamyl)SPD. In conclusion, FAD-PAO degradation of the N(8)-terminal reactive residue of the crystallins bound N(1)-mono(γ-glutamyl)SPD together with the increased concentration of exogenous SPD, leading to saturation of glutamine residues on the substrate proteins, drastically reduces N(1)-N(8)-bis(γ-glutamyl)SPD crosslinks formation, preventing crystallins polymerization and avoiding rabbit lens opacification. The ability of SPD and MDL 72527 to modulate the activities of TG2 and FAD-PAO involved in the mechanism of lens opacification suggests a potential strategy for the prevention of senile cataract.
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spelling pubmed-74322002020-08-24 Polyamine Oxidase Is Involved in Spermidine Reduction of Transglutaminase Type 2-Catalyzed βH-Crystallins Polymerization in Calcium-Induced Experimental Cataract Mischiati, Carlo Feriotto, Giordana Tabolacci, Claudio Domenici, Fabio Melino, Sonia Borromeo, Ilaria Forni, Cinzia De Martino, Angelo Beninati, Simone Int J Mol Sci Article In an in vitro Ca(2+)-induced cataract model, the progression of opacification is paralleled by a rapid decrease of the endogenous levels of spermidine (SPD) and an increase of transglutaminase type 2 (TG2, EC 2.3.2.13)-catalyzed lens crystallins cross-linking by protein-bound N(1)-N(8)-bis(γ-glutamyl) SPD. This pattern was reversed adding exogenous SPD to the incubation resulting in a delayed loss of transparency of the rabbit lens. The present report shows evidence on the main incorporation of SPD by the catalytic activity of TG2, toward βH-crystallins and in particular to the βB2- and mostly in βB3-crystallins. The increase of endogenous SPD in the cultured rabbit lens showed the activation of a flavin adenine dinucleotide (FAD)-dependent polyamine oxidases (PAO EC 1.5.3.11). As it is known that FAD-PAO degrades the N(8)-terminal reactive portion of N(1)-mono(γ-glutamyl) SPD, the protein-bound N(8)-mono(γ-glutamyl) SPD was found the mainly available derivative for the potential formation of βB3-crystallins cross-links by protein-bound N(1)-N(8)-bis(γ-glutamyl)SPD. In conclusion, FAD-PAO degradation of the N(8)-terminal reactive residue of the crystallins bound N(1)-mono(γ-glutamyl)SPD together with the increased concentration of exogenous SPD, leading to saturation of glutamine residues on the substrate proteins, drastically reduces N(1)-N(8)-bis(γ-glutamyl)SPD crosslinks formation, preventing crystallins polymerization and avoiding rabbit lens opacification. The ability of SPD and MDL 72527 to modulate the activities of TG2 and FAD-PAO involved in the mechanism of lens opacification suggests a potential strategy for the prevention of senile cataract. MDPI 2020-07-30 /pmc/articles/PMC7432200/ /pubmed/32751462 http://dx.doi.org/10.3390/ijms21155427 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Mischiati, Carlo
Feriotto, Giordana
Tabolacci, Claudio
Domenici, Fabio
Melino, Sonia
Borromeo, Ilaria
Forni, Cinzia
De Martino, Angelo
Beninati, Simone
Polyamine Oxidase Is Involved in Spermidine Reduction of Transglutaminase Type 2-Catalyzed βH-Crystallins Polymerization in Calcium-Induced Experimental Cataract
title Polyamine Oxidase Is Involved in Spermidine Reduction of Transglutaminase Type 2-Catalyzed βH-Crystallins Polymerization in Calcium-Induced Experimental Cataract
title_full Polyamine Oxidase Is Involved in Spermidine Reduction of Transglutaminase Type 2-Catalyzed βH-Crystallins Polymerization in Calcium-Induced Experimental Cataract
title_fullStr Polyamine Oxidase Is Involved in Spermidine Reduction of Transglutaminase Type 2-Catalyzed βH-Crystallins Polymerization in Calcium-Induced Experimental Cataract
title_full_unstemmed Polyamine Oxidase Is Involved in Spermidine Reduction of Transglutaminase Type 2-Catalyzed βH-Crystallins Polymerization in Calcium-Induced Experimental Cataract
title_short Polyamine Oxidase Is Involved in Spermidine Reduction of Transglutaminase Type 2-Catalyzed βH-Crystallins Polymerization in Calcium-Induced Experimental Cataract
title_sort polyamine oxidase is involved in spermidine reduction of transglutaminase type 2-catalyzed βh-crystallins polymerization in calcium-induced experimental cataract
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7432200/
https://www.ncbi.nlm.nih.gov/pubmed/32751462
http://dx.doi.org/10.3390/ijms21155427
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