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A Simple Three-Step Method for Design and Affinity Testing of New Antisense Peptides: An Example of Erythropoietin

Antisense peptide technology is a valuable tool for deriving new biologically active molecules and performing peptide–receptor modulation. It is based on the fact that peptides specified by the complementary (antisense) nucleotide sequences often bind to each other with a higher specificity and effi...

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Autores principales: Štambuk, Nikola, Manojlović, Zoran, Turčić, Petra, Martinić, Roko, Konjevoda, Paško, Weitner, Tin, Wardega, Piotr, Gabričević, Mario
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4100090/
https://www.ncbi.nlm.nih.gov/pubmed/24865486
http://dx.doi.org/10.3390/ijms15069209
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author Štambuk, Nikola
Manojlović, Zoran
Turčić, Petra
Martinić, Roko
Konjevoda, Paško
Weitner, Tin
Wardega, Piotr
Gabričević, Mario
author_facet Štambuk, Nikola
Manojlović, Zoran
Turčić, Petra
Martinić, Roko
Konjevoda, Paško
Weitner, Tin
Wardega, Piotr
Gabričević, Mario
author_sort Štambuk, Nikola
collection PubMed
description Antisense peptide technology is a valuable tool for deriving new biologically active molecules and performing peptide–receptor modulation. It is based on the fact that peptides specified by the complementary (antisense) nucleotide sequences often bind to each other with a higher specificity and efficacy. We tested the validity of this concept on the example of human erythropoietin, a well-characterized and pharmacologically relevant hematopoietic growth factor. The purpose of the work was to present and test simple and efficient three-step procedure for the design of an antisense peptide targeting receptor-binding site of human erythropoietin. Firstly, we selected the carboxyl-terminal receptor binding region of the molecule (epitope) as a template for the antisense peptide modeling; Secondly, we designed an antisense peptide using mRNA transcription of the epitope sequence in the 3'→5' direction and computational screening of potential paratope structures with BLAST; Thirdly, we evaluated sense–antisense (epitope–paratope) peptide binding and affinity by means of fluorescence spectroscopy and microscale thermophoresis. Both methods showed similar K(d) values of 850 and 816 µM, respectively. The advantages of the methods were: fast screening with a small quantity of the sample needed, and measurements done within the range of physicochemical parameters resembling physiological conditions. Antisense peptides targeting specific erythropoietin region(s) could be used for the development of new immunochemical methods. Selected antisense peptides with optimal affinity are potential lead compounds for the development of novel diagnostic substances, biopharmaceuticals and vaccines.
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spelling pubmed-41000902014-07-16 A Simple Three-Step Method for Design and Affinity Testing of New Antisense Peptides: An Example of Erythropoietin Štambuk, Nikola Manojlović, Zoran Turčić, Petra Martinić, Roko Konjevoda, Paško Weitner, Tin Wardega, Piotr Gabričević, Mario Int J Mol Sci Article Antisense peptide technology is a valuable tool for deriving new biologically active molecules and performing peptide–receptor modulation. It is based on the fact that peptides specified by the complementary (antisense) nucleotide sequences often bind to each other with a higher specificity and efficacy. We tested the validity of this concept on the example of human erythropoietin, a well-characterized and pharmacologically relevant hematopoietic growth factor. The purpose of the work was to present and test simple and efficient three-step procedure for the design of an antisense peptide targeting receptor-binding site of human erythropoietin. Firstly, we selected the carboxyl-terminal receptor binding region of the molecule (epitope) as a template for the antisense peptide modeling; Secondly, we designed an antisense peptide using mRNA transcription of the epitope sequence in the 3'→5' direction and computational screening of potential paratope structures with BLAST; Thirdly, we evaluated sense–antisense (epitope–paratope) peptide binding and affinity by means of fluorescence spectroscopy and microscale thermophoresis. Both methods showed similar K(d) values of 850 and 816 µM, respectively. The advantages of the methods were: fast screening with a small quantity of the sample needed, and measurements done within the range of physicochemical parameters resembling physiological conditions. Antisense peptides targeting specific erythropoietin region(s) could be used for the development of new immunochemical methods. Selected antisense peptides with optimal affinity are potential lead compounds for the development of novel diagnostic substances, biopharmaceuticals and vaccines. MDPI 2014-05-26 /pmc/articles/PMC4100090/ /pubmed/24865486 http://dx.doi.org/10.3390/ijms15069209 Text en © 2010 by the authors; licensee MDPI, Basel, Switzerland. http://creativecommons.org/licenses/by/3.0/ This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/3.0/).
spellingShingle Article
Štambuk, Nikola
Manojlović, Zoran
Turčić, Petra
Martinić, Roko
Konjevoda, Paško
Weitner, Tin
Wardega, Piotr
Gabričević, Mario
A Simple Three-Step Method for Design and Affinity Testing of New Antisense Peptides: An Example of Erythropoietin
title A Simple Three-Step Method for Design and Affinity Testing of New Antisense Peptides: An Example of Erythropoietin
title_full A Simple Three-Step Method for Design and Affinity Testing of New Antisense Peptides: An Example of Erythropoietin
title_fullStr A Simple Three-Step Method for Design and Affinity Testing of New Antisense Peptides: An Example of Erythropoietin
title_full_unstemmed A Simple Three-Step Method for Design and Affinity Testing of New Antisense Peptides: An Example of Erythropoietin
title_short A Simple Three-Step Method for Design and Affinity Testing of New Antisense Peptides: An Example of Erythropoietin
title_sort simple three-step method for design and affinity testing of new antisense peptides: an example of erythropoietin
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4100090/
https://www.ncbi.nlm.nih.gov/pubmed/24865486
http://dx.doi.org/10.3390/ijms15069209
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