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Dual-Role Peptide with Capping and Cleavage Site Motifs in Nanoparticle-Based One-Pot Colorimetric and Electrochemical Protease Assay

[Image: see text] A new method for enzyme substrate assembly and its use in proteolytic enzyme assays with colorimetric and electrochemical detection is presented. The novelty of the method is the use of dual-function synthetic peptide containing both gold clustering and protease-sensitive moieties,...

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Autores principales: Szabó, Tamás, Bakos, István, Vrbovszki, Barbara, Jeerapan, Itthipon, Pekker, Péter, Mihály, Judith, Németh, Krisztina, Wang, Joseph, Keresztes, Zsófia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10308550/
https://www.ncbi.nlm.nih.gov/pubmed/37396282
http://dx.doi.org/10.1021/acsomega.3c00771
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author Szabó, Tamás
Bakos, István
Vrbovszki, Barbara
Jeerapan, Itthipon
Pekker, Péter
Mihály, Judith
Németh, Krisztina
Wang, Joseph
Keresztes, Zsófia
author_facet Szabó, Tamás
Bakos, István
Vrbovszki, Barbara
Jeerapan, Itthipon
Pekker, Péter
Mihály, Judith
Németh, Krisztina
Wang, Joseph
Keresztes, Zsófia
author_sort Szabó, Tamás
collection PubMed
description [Image: see text] A new method for enzyme substrate assembly and its use in proteolytic enzyme assays with colorimetric and electrochemical detection is presented. The novelty of the method is the use of dual-function synthetic peptide containing both gold clustering and protease-sensitive moieties, which not only induces the simple formation of the peptide-decorated gold nanoparticle test substrates but also allows for the detection of proteolysis in the same batch. Protease-treated nanoparticles with a destabilized peptide shell became more prone to electroactivity, and thus, the model enzyme plasmin activity could be quantified with stripping square wave voltammetry analysis as well, giving an alternative method to conduct aggregation-based assays. Spectrophotometric and electrochemical calibration data proved to be linear within the 40–100 nM active enzyme concentration range, with possible extensions of the dynamic range by varying substrate concentration. The simple initial components and the ease of synthesis make the assay substrate preparation economic and easy to implement. The possibility of cross-check analytical results with two independent measurement techniques in the same batch greatly increases the applicability of the proposed system.
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spelling pubmed-103085502023-06-30 Dual-Role Peptide with Capping and Cleavage Site Motifs in Nanoparticle-Based One-Pot Colorimetric and Electrochemical Protease Assay Szabó, Tamás Bakos, István Vrbovszki, Barbara Jeerapan, Itthipon Pekker, Péter Mihály, Judith Németh, Krisztina Wang, Joseph Keresztes, Zsófia ACS Omega [Image: see text] A new method for enzyme substrate assembly and its use in proteolytic enzyme assays with colorimetric and electrochemical detection is presented. The novelty of the method is the use of dual-function synthetic peptide containing both gold clustering and protease-sensitive moieties, which not only induces the simple formation of the peptide-decorated gold nanoparticle test substrates but also allows for the detection of proteolysis in the same batch. Protease-treated nanoparticles with a destabilized peptide shell became more prone to electroactivity, and thus, the model enzyme plasmin activity could be quantified with stripping square wave voltammetry analysis as well, giving an alternative method to conduct aggregation-based assays. Spectrophotometric and electrochemical calibration data proved to be linear within the 40–100 nM active enzyme concentration range, with possible extensions of the dynamic range by varying substrate concentration. The simple initial components and the ease of synthesis make the assay substrate preparation economic and easy to implement. The possibility of cross-check analytical results with two independent measurement techniques in the same batch greatly increases the applicability of the proposed system. American Chemical Society 2023-06-09 /pmc/articles/PMC10308550/ /pubmed/37396282 http://dx.doi.org/10.1021/acsomega.3c00771 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Szabó, Tamás
Bakos, István
Vrbovszki, Barbara
Jeerapan, Itthipon
Pekker, Péter
Mihály, Judith
Németh, Krisztina
Wang, Joseph
Keresztes, Zsófia
Dual-Role Peptide with Capping and Cleavage Site Motifs in Nanoparticle-Based One-Pot Colorimetric and Electrochemical Protease Assay
title Dual-Role Peptide with Capping and Cleavage Site Motifs in Nanoparticle-Based One-Pot Colorimetric and Electrochemical Protease Assay
title_full Dual-Role Peptide with Capping and Cleavage Site Motifs in Nanoparticle-Based One-Pot Colorimetric and Electrochemical Protease Assay
title_fullStr Dual-Role Peptide with Capping and Cleavage Site Motifs in Nanoparticle-Based One-Pot Colorimetric and Electrochemical Protease Assay
title_full_unstemmed Dual-Role Peptide with Capping and Cleavage Site Motifs in Nanoparticle-Based One-Pot Colorimetric and Electrochemical Protease Assay
title_short Dual-Role Peptide with Capping and Cleavage Site Motifs in Nanoparticle-Based One-Pot Colorimetric and Electrochemical Protease Assay
title_sort dual-role peptide with capping and cleavage site motifs in nanoparticle-based one-pot colorimetric and electrochemical protease assay
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10308550/
https://www.ncbi.nlm.nih.gov/pubmed/37396282
http://dx.doi.org/10.1021/acsomega.3c00771
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