In silico Analysis and Expression of Osmotin-EAAAK-LTP Fused Protein

Antifungal agents are causing different problems in the agriculture industry. Plants are using various defense mechanisms for resistance against fungal pathogens. Some examples of these mechanisms are making physical barriers, producing chemical components and pathogenesis-related proteins such as l...

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Main Authors: Minoo Partovi Nasr, Mostafa Motalebi, Mohammad Reza Zamani, Esmat Jourabchi
Format: Article
Language:English
Published: University of Mazandaran 2020-02-01
Series:Journal of Genetic Resources
Subjects:
Online Access:http://sc.journals.umz.ac.ir/article_2550_4a08bee4a7371f2e90a167bd6843c371.pdf
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spelling doaj-1c2ad72c048140ecae1b5080af27e2eb2021-08-18T09:18:55ZengUniversity of MazandaranJournal of Genetic Resources2423-42572588-25892020-02-0161414810.22080/jgr.2020.17859.11712550In silico Analysis and Expression of Osmotin-EAAAK-LTP Fused ProteinMinoo Partovi Nasr0Mostafa Motalebi1Mohammad Reza Zamani2Esmat Jourabchi3National Institute of Genetic Engineering and Biotechnology (NIGEB), Tehran, IRANNational Institute of Genetic Engineering and Biotechnology (NIGEB), Tehran, IRANNational Institute of Genetic Engineering and Biotechnology (NIGEB), Tehran, IRANNational Institute of Genetic Engineering and Biotechnology (NIGEB), Tehran, IRANAntifungal agents are causing different problems in the agriculture industry. Plants are using various defense mechanisms for resistance against fungal pathogens. Some examples of these mechanisms are making physical barriers, producing chemical components and pathogenesis-related proteins such as lipid transfer protein (LTP) and Osmotin which can inhibit the growth of fungi at micro-molar concentrations. In this study, Osmotin and LTp genes were fused by the EAAAK linker to produce a single-fused gene construct. An in silico approach was used to predict and analyze Osmotin-EAAAK-LTP fused protein. Secondary and tertiary structure and mRNA formation of fused protein were predicted using bioinformatics tools. The designed construct was chemically synthesized and cloned in the pUC57 cloning vector. To express the fused protein gene was subcloned in expression vector pET-21b (+) with a hexahistidine tag. This gene was used for prokaryotic expression in E. coliBL21 (DE3) host. Different expression conditions were examined for expressing of fused protein. The fused protein was expressed with 1 mM IPTG after 3 hours of incubation at 28°C. The expression of 36.5 kDa protein was confirmed by western blotting. The study of antifungal activity of expressed fused protein was achieved by radial diffusion assay. This protein was able to exhibit antifungal activity towards experimented plant pathogenic fungi under in vitro conditions.http://sc.journals.umz.ac.ir/article_2550_4a08bee4a7371f2e90a167bd6843c371.pdfantifungal activityin silicolipid transfer proteinosmotinpathogenesis-related proteins
collection DOAJ
language English
format Article
sources DOAJ
author Minoo Partovi Nasr
Mostafa Motalebi
Mohammad Reza Zamani
Esmat Jourabchi
spellingShingle Minoo Partovi Nasr
Mostafa Motalebi
Mohammad Reza Zamani
Esmat Jourabchi
In silico Analysis and Expression of Osmotin-EAAAK-LTP Fused Protein
Journal of Genetic Resources
antifungal activity
in silico
lipid transfer protein
osmotin
pathogenesis-related proteins
author_facet Minoo Partovi Nasr
Mostafa Motalebi
Mohammad Reza Zamani
Esmat Jourabchi
author_sort Minoo Partovi Nasr
title In silico Analysis and Expression of Osmotin-EAAAK-LTP Fused Protein
title_short In silico Analysis and Expression of Osmotin-EAAAK-LTP Fused Protein
title_full In silico Analysis and Expression of Osmotin-EAAAK-LTP Fused Protein
title_fullStr In silico Analysis and Expression of Osmotin-EAAAK-LTP Fused Protein
title_full_unstemmed In silico Analysis and Expression of Osmotin-EAAAK-LTP Fused Protein
title_sort in silico analysis and expression of osmotin-eaaak-ltp fused protein
publisher University of Mazandaran
series Journal of Genetic Resources
issn 2423-4257
2588-2589
publishDate 2020-02-01
description Antifungal agents are causing different problems in the agriculture industry. Plants are using various defense mechanisms for resistance against fungal pathogens. Some examples of these mechanisms are making physical barriers, producing chemical components and pathogenesis-related proteins such as lipid transfer protein (LTP) and Osmotin which can inhibit the growth of fungi at micro-molar concentrations. In this study, Osmotin and LTp genes were fused by the EAAAK linker to produce a single-fused gene construct. An in silico approach was used to predict and analyze Osmotin-EAAAK-LTP fused protein. Secondary and tertiary structure and mRNA formation of fused protein were predicted using bioinformatics tools. The designed construct was chemically synthesized and cloned in the pUC57 cloning vector. To express the fused protein gene was subcloned in expression vector pET-21b (+) with a hexahistidine tag. This gene was used for prokaryotic expression in E. coliBL21 (DE3) host. Different expression conditions were examined for expressing of fused protein. The fused protein was expressed with 1 mM IPTG after 3 hours of incubation at 28°C. The expression of 36.5 kDa protein was confirmed by western blotting. The study of antifungal activity of expressed fused protein was achieved by radial diffusion assay. This protein was able to exhibit antifungal activity towards experimented plant pathogenic fungi under in vitro conditions.
topic antifungal activity
in silico
lipid transfer protein
osmotin
pathogenesis-related proteins
url http://sc.journals.umz.ac.ir/article_2550_4a08bee4a7371f2e90a167bd6843c371.pdf
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AT mohammadrezazamani insilicoanalysisandexpressionofosmotineaaakltpfusedprotein
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