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New Insights on Saporin Resistance to Chemical Derivatization with Heterobifunctional Reagents

Saporin is a type 1 ribosome-inactivating protein widely used as toxic payload in the construction of targeted toxins, chimeric molecules formed by a toxic portion linked to a carrier moiety. Among the most used carriers, there are large molecules (mainly antibodies) and small molecules (such as neu...

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Autores principales: Bortolotti, Massimo, Biscotti, Francesco, Zanello, Andrea, Bolognesi, Andrea, Polito, Letizia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10135674/
https://www.ncbi.nlm.nih.gov/pubmed/37189832
http://dx.doi.org/10.3390/biomedicines11041214
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author Bortolotti, Massimo
Biscotti, Francesco
Zanello, Andrea
Bolognesi, Andrea
Polito, Letizia
author_facet Bortolotti, Massimo
Biscotti, Francesco
Zanello, Andrea
Bolognesi, Andrea
Polito, Letizia
author_sort Bortolotti, Massimo
collection PubMed
description Saporin is a type 1 ribosome-inactivating protein widely used as toxic payload in the construction of targeted toxins, chimeric molecules formed by a toxic portion linked to a carrier moiety. Among the most used carriers, there are large molecules (mainly antibodies) and small molecules (such as neurotransmitters, growth factors and peptides). Some saporin-containing targeted toxins have been used for the experimental treatment of several diseases, giving very promising results. In this context, one of the reasons for the successful use of saporin lies in its resistance to proteolytic enzymes and to conjugation procedures. In this paper, we evaluated the influence of derivatization on saporin using three heterobifunctional reagents, namely 2-iminothiolane (2-IT), N-succinimidyl 3-(2-pyridyldithio)propionate (SPDP) and 4-succinimidyloxycarbonyl-α-methyl-α-[2-pyridyldithio]toluene (SMPT). In order to obtain the highest number of inserted -SH groups with the lowest reduction of saporin biological activities, we assessed the residual ability of saporin to inhibit protein synthesis, to depurinate DNA and to induce cytotoxicity after derivatization. Our results demonstrate that saporin maintains an excellent resistance to derivatization processes, especially with SPDP, and permit us to define reaction conditions, in which saporin biological properties may not be altered. Therefore, these findings provide useful information for the construction of saporin-based targeted toxins, especially with small carriers.
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spelling pubmed-101356742023-04-28 New Insights on Saporin Resistance to Chemical Derivatization with Heterobifunctional Reagents Bortolotti, Massimo Biscotti, Francesco Zanello, Andrea Bolognesi, Andrea Polito, Letizia Biomedicines Article Saporin is a type 1 ribosome-inactivating protein widely used as toxic payload in the construction of targeted toxins, chimeric molecules formed by a toxic portion linked to a carrier moiety. Among the most used carriers, there are large molecules (mainly antibodies) and small molecules (such as neurotransmitters, growth factors and peptides). Some saporin-containing targeted toxins have been used for the experimental treatment of several diseases, giving very promising results. In this context, one of the reasons for the successful use of saporin lies in its resistance to proteolytic enzymes and to conjugation procedures. In this paper, we evaluated the influence of derivatization on saporin using three heterobifunctional reagents, namely 2-iminothiolane (2-IT), N-succinimidyl 3-(2-pyridyldithio)propionate (SPDP) and 4-succinimidyloxycarbonyl-α-methyl-α-[2-pyridyldithio]toluene (SMPT). In order to obtain the highest number of inserted -SH groups with the lowest reduction of saporin biological activities, we assessed the residual ability of saporin to inhibit protein synthesis, to depurinate DNA and to induce cytotoxicity after derivatization. Our results demonstrate that saporin maintains an excellent resistance to derivatization processes, especially with SPDP, and permit us to define reaction conditions, in which saporin biological properties may not be altered. Therefore, these findings provide useful information for the construction of saporin-based targeted toxins, especially with small carriers. MDPI 2023-04-19 /pmc/articles/PMC10135674/ /pubmed/37189832 http://dx.doi.org/10.3390/biomedicines11041214 Text en © 2023 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 Article
Bortolotti, Massimo
Biscotti, Francesco
Zanello, Andrea
Bolognesi, Andrea
Polito, Letizia
New Insights on Saporin Resistance to Chemical Derivatization with Heterobifunctional Reagents
title New Insights on Saporin Resistance to Chemical Derivatization with Heterobifunctional Reagents
title_full New Insights on Saporin Resistance to Chemical Derivatization with Heterobifunctional Reagents
title_fullStr New Insights on Saporin Resistance to Chemical Derivatization with Heterobifunctional Reagents
title_full_unstemmed New Insights on Saporin Resistance to Chemical Derivatization with Heterobifunctional Reagents
title_short New Insights on Saporin Resistance to Chemical Derivatization with Heterobifunctional Reagents
title_sort new insights on saporin resistance to chemical derivatization with heterobifunctional reagents
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10135674/
https://www.ncbi.nlm.nih.gov/pubmed/37189832
http://dx.doi.org/10.3390/biomedicines11041214
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