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Recombinant production of mecasermin in E. coli expression system

Human Insulin-like growth factor 1 (hIGF-1) consists of 70 amino acids in a single chain with three intermolecular disulfide bridges possessing valuable therapeutic effects. To date, numerous variants of specifically engineered hIGF-1 have been produced so as to improve hIGF-1 biological activity, s...

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Autores principales: Jafari, S., Babaeipour, V., Seyedi, H.A. Eslampanah, Rahaie, M., Mofid, M.R., Haddad, L., Namvaran, M.M., Fallah, J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Medknow Publications & Media Pvt Ltd 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4326983/
https://www.ncbi.nlm.nih.gov/pubmed/26339260
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author Jafari, S.
Babaeipour, V.
Seyedi, H.A. Eslampanah
Rahaie, M.
Mofid, M.R.
Haddad, L.
Namvaran, M.M.
Fallah, J.
author_facet Jafari, S.
Babaeipour, V.
Seyedi, H.A. Eslampanah
Rahaie, M.
Mofid, M.R.
Haddad, L.
Namvaran, M.M.
Fallah, J.
author_sort Jafari, S.
collection PubMed
description Human Insulin-like growth factor 1 (hIGF-1) consists of 70 amino acids in a single chain with three intermolecular disulfide bridges possessing valuable therapeutic effects. To date, numerous variants of specifically engineered hIGF-1 have been produced so as to improve hIGF-1 biological activity, stability and stronger binding to IGF-1 receptor. Mecasermin is one of the modified variants with one amino acid substitution near the N-terminal (T4I) approved for the treatment of growth failure diabetes, wound healing, amyotrophic lateral sclerosis and severe primary IGF-1 deficiency. No scientific report for recombinant production of mecasermin in Escherichia coli (E. coli) expression system has been sofar reported. In the present study, we therefore investigated the overexpression of mecasermin in two different E. coli strains in order to obtain higher yield of recombinant protein. To achieve this goal, mecasermin DNA encoding sequence was designed based on polypeptide sequence, optimized according to E. coli codon preference, and cloned in pET15b. Recombinant vector, pET15-mecasermin, transferred into two E. coli strains rigami B (DE3) and BL21 (DE3) and induced for expression in a small scale. Results revealed the E. coli Origami B (DE3) expression system was a preferable host for mecasermin production due to its high expression level being around twice as much as BL21 (DE3). Large scale mecasermin production was performed in batch culture and produced recombinant protein specifically confirmed by western blotting and mass spectroscopy. Since major part of recombinant mecasermin was expressed as inclusion body, isolation and refolding was accomplished through developed purification procedure, and finally recombinant protein was successfully purified by gel filtration chromatography.
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spelling pubmed-43269832015-09-03 Recombinant production of mecasermin in E. coli expression system Jafari, S. Babaeipour, V. Seyedi, H.A. Eslampanah Rahaie, M. Mofid, M.R. Haddad, L. Namvaran, M.M. Fallah, J. Res Pharm Sci Original Article Human Insulin-like growth factor 1 (hIGF-1) consists of 70 amino acids in a single chain with three intermolecular disulfide bridges possessing valuable therapeutic effects. To date, numerous variants of specifically engineered hIGF-1 have been produced so as to improve hIGF-1 biological activity, stability and stronger binding to IGF-1 receptor. Mecasermin is one of the modified variants with one amino acid substitution near the N-terminal (T4I) approved for the treatment of growth failure diabetes, wound healing, amyotrophic lateral sclerosis and severe primary IGF-1 deficiency. No scientific report for recombinant production of mecasermin in Escherichia coli (E. coli) expression system has been sofar reported. In the present study, we therefore investigated the overexpression of mecasermin in two different E. coli strains in order to obtain higher yield of recombinant protein. To achieve this goal, mecasermin DNA encoding sequence was designed based on polypeptide sequence, optimized according to E. coli codon preference, and cloned in pET15b. Recombinant vector, pET15-mecasermin, transferred into two E. coli strains rigami B (DE3) and BL21 (DE3) and induced for expression in a small scale. Results revealed the E. coli Origami B (DE3) expression system was a preferable host for mecasermin production due to its high expression level being around twice as much as BL21 (DE3). Large scale mecasermin production was performed in batch culture and produced recombinant protein specifically confirmed by western blotting and mass spectroscopy. Since major part of recombinant mecasermin was expressed as inclusion body, isolation and refolding was accomplished through developed purification procedure, and finally recombinant protein was successfully purified by gel filtration chromatography. Medknow Publications & Media Pvt Ltd 2014 /pmc/articles/PMC4326983/ /pubmed/26339260 Text en Copyright: © Research in Pharmaceutical Sciences http://creativecommons.org/licenses/by-nc-sa/3.0 This is an open-access article distributed under the terms of the Creative Commons Attribution-Noncommercial-Share Alike 3.0 Unported, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Jafari, S.
Babaeipour, V.
Seyedi, H.A. Eslampanah
Rahaie, M.
Mofid, M.R.
Haddad, L.
Namvaran, M.M.
Fallah, J.
Recombinant production of mecasermin in E. coli expression system
title Recombinant production of mecasermin in E. coli expression system
title_full Recombinant production of mecasermin in E. coli expression system
title_fullStr Recombinant production of mecasermin in E. coli expression system
title_full_unstemmed Recombinant production of mecasermin in E. coli expression system
title_short Recombinant production of mecasermin in E. coli expression system
title_sort recombinant production of mecasermin in e. coli expression system
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4326983/
https://www.ncbi.nlm.nih.gov/pubmed/26339260
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