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Data regarding a new, vector-enzymatic DNA fragment amplification-expression technology for the construction of artificial, concatemeric DNA, RNA and proteins, as well as biological effects of selected polypeptides obtained using this method

Applications of bioactive peptides and polypeptides are emerging in areas such as drug development and drug delivery systems. These compounds are bioactive, biocompatible and represent a wide range of chemical properties, enabling further adjustments of obtained biomaterials. However, delivering lar...

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Autores principales: Skowron, Piotr M., Krawczun, Natalia, Żebrowska, Joanna, Krefft, Daria, Żołnierkiewicz, Olga, Bielawa, Marta, Jeżewska-Frąckowiak, Joanna, Janus, Łukasz, Witkowska, Małgorzata, Palczewska, Małgorzata, Schumacher, Adriana, Wardowska, Anna, Deptuła, Milena, Czupryn, Artur, Mucha, Piotr, Piotrowski, Arkadiusz, Sachadyn, Paweł, Rodziewicz-Motowidło, Sylwia, Pikuła, Michał, Zylicz-Stachula, Agnieszka
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6956754/
https://www.ncbi.nlm.nih.gov/pubmed/31956674
http://dx.doi.org/10.1016/j.dib.2019.105069
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author Skowron, Piotr M.
Krawczun, Natalia
Żebrowska, Joanna
Krefft, Daria
Żołnierkiewicz, Olga
Bielawa, Marta
Jeżewska-Frąckowiak, Joanna
Janus, Łukasz
Witkowska, Małgorzata
Palczewska, Małgorzata
Schumacher, Adriana
Wardowska, Anna
Deptuła, Milena
Czupryn, Artur
Mucha, Piotr
Piotrowski, Arkadiusz
Sachadyn, Paweł
Rodziewicz-Motowidło, Sylwia
Pikuła, Michał
Zylicz-Stachula, Agnieszka
author_facet Skowron, Piotr M.
Krawczun, Natalia
Żebrowska, Joanna
Krefft, Daria
Żołnierkiewicz, Olga
Bielawa, Marta
Jeżewska-Frąckowiak, Joanna
Janus, Łukasz
Witkowska, Małgorzata
Palczewska, Małgorzata
Schumacher, Adriana
Wardowska, Anna
Deptuła, Milena
Czupryn, Artur
Mucha, Piotr
Piotrowski, Arkadiusz
Sachadyn, Paweł
Rodziewicz-Motowidło, Sylwia
Pikuła, Michał
Zylicz-Stachula, Agnieszka
author_sort Skowron, Piotr M.
collection PubMed
description Applications of bioactive peptides and polypeptides are emerging in areas such as drug development and drug delivery systems. These compounds are bioactive, biocompatible and represent a wide range of chemical properties, enabling further adjustments of obtained biomaterials. However, delivering large quantities of peptide derivatives is still challenging. Several methods have been developed for the production of concatemers – multiple copies of the desired protein segments. We have presented an efficient method for the production of peptides of desired length, expressed from concatemeric Open Reading Frame. The method employs specific amplification-expression DNA vectors. The main methodological approaches are described by Skowron et al., 2020 [1]. As an illustration of the demonstrated method's utility, an epitope from the S protein of Hepatitis B virus (HBV) was amplified. Additionally, peptides, showing potentially pro-regenerative properties, derived from the angiopoietin-related growth factor (AGF) were designed and amplified. Here we present a dataset including: (i) detailed protocols for the purification of HBV and AGF – derived polyepitopic protein concatemers, (ii) sequences of the designed primers, vectors and recombinant constructs, (iii) data on cytotoxicity, immunogenicity and stability of AGF-derived polypeptides.
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spelling pubmed-69567542020-01-17 Data regarding a new, vector-enzymatic DNA fragment amplification-expression technology for the construction of artificial, concatemeric DNA, RNA and proteins, as well as biological effects of selected polypeptides obtained using this method Skowron, Piotr M. Krawczun, Natalia Żebrowska, Joanna Krefft, Daria Żołnierkiewicz, Olga Bielawa, Marta Jeżewska-Frąckowiak, Joanna Janus, Łukasz Witkowska, Małgorzata Palczewska, Małgorzata Schumacher, Adriana Wardowska, Anna Deptuła, Milena Czupryn, Artur Mucha, Piotr Piotrowski, Arkadiusz Sachadyn, Paweł Rodziewicz-Motowidło, Sylwia Pikuła, Michał Zylicz-Stachula, Agnieszka Data Brief Materials Science Applications of bioactive peptides and polypeptides are emerging in areas such as drug development and drug delivery systems. These compounds are bioactive, biocompatible and represent a wide range of chemical properties, enabling further adjustments of obtained biomaterials. However, delivering large quantities of peptide derivatives is still challenging. Several methods have been developed for the production of concatemers – multiple copies of the desired protein segments. We have presented an efficient method for the production of peptides of desired length, expressed from concatemeric Open Reading Frame. The method employs specific amplification-expression DNA vectors. The main methodological approaches are described by Skowron et al., 2020 [1]. As an illustration of the demonstrated method's utility, an epitope from the S protein of Hepatitis B virus (HBV) was amplified. Additionally, peptides, showing potentially pro-regenerative properties, derived from the angiopoietin-related growth factor (AGF) were designed and amplified. Here we present a dataset including: (i) detailed protocols for the purification of HBV and AGF – derived polyepitopic protein concatemers, (ii) sequences of the designed primers, vectors and recombinant constructs, (iii) data on cytotoxicity, immunogenicity and stability of AGF-derived polypeptides. Elsevier 2019-12-31 /pmc/articles/PMC6956754/ /pubmed/31956674 http://dx.doi.org/10.1016/j.dib.2019.105069 Text en © 2019 The Author(s) http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Materials Science
Skowron, Piotr M.
Krawczun, Natalia
Żebrowska, Joanna
Krefft, Daria
Żołnierkiewicz, Olga
Bielawa, Marta
Jeżewska-Frąckowiak, Joanna
Janus, Łukasz
Witkowska, Małgorzata
Palczewska, Małgorzata
Schumacher, Adriana
Wardowska, Anna
Deptuła, Milena
Czupryn, Artur
Mucha, Piotr
Piotrowski, Arkadiusz
Sachadyn, Paweł
Rodziewicz-Motowidło, Sylwia
Pikuła, Michał
Zylicz-Stachula, Agnieszka
Data regarding a new, vector-enzymatic DNA fragment amplification-expression technology for the construction of artificial, concatemeric DNA, RNA and proteins, as well as biological effects of selected polypeptides obtained using this method
title Data regarding a new, vector-enzymatic DNA fragment amplification-expression technology for the construction of artificial, concatemeric DNA, RNA and proteins, as well as biological effects of selected polypeptides obtained using this method
title_full Data regarding a new, vector-enzymatic DNA fragment amplification-expression technology for the construction of artificial, concatemeric DNA, RNA and proteins, as well as biological effects of selected polypeptides obtained using this method
title_fullStr Data regarding a new, vector-enzymatic DNA fragment amplification-expression technology for the construction of artificial, concatemeric DNA, RNA and proteins, as well as biological effects of selected polypeptides obtained using this method
title_full_unstemmed Data regarding a new, vector-enzymatic DNA fragment amplification-expression technology for the construction of artificial, concatemeric DNA, RNA and proteins, as well as biological effects of selected polypeptides obtained using this method
title_short Data regarding a new, vector-enzymatic DNA fragment amplification-expression technology for the construction of artificial, concatemeric DNA, RNA and proteins, as well as biological effects of selected polypeptides obtained using this method
title_sort data regarding a new, vector-enzymatic dna fragment amplification-expression technology for the construction of artificial, concatemeric dna, rna and proteins, as well as biological effects of selected polypeptides obtained using this method
topic Materials Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6956754/
https://www.ncbi.nlm.nih.gov/pubmed/31956674
http://dx.doi.org/10.1016/j.dib.2019.105069
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