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Efficient E. coli Expression Strategies for Production of Soluble Human Crystallin ALDH3A1

Aldehyde dehydrogenase 3A1 (ALDH3A1) is a recently characterized corneal crystallin with its exact functions still being unclear. Expressing recombinant human ALDH3A1 has been difficult in Escherichia coli (E. coli) because of low solubility, yield and insufficient purity issues. In this report, we...

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Autores principales: Voulgaridou, Georgia-Persephoni, Mantso, Theodora, Chlichlia, Katerina, Panayiotidis, Mihalis I., Pappa, Aglaia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3579847/
https://www.ncbi.nlm.nih.gov/pubmed/23451057
http://dx.doi.org/10.1371/journal.pone.0056582
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author Voulgaridou, Georgia-Persephoni
Mantso, Theodora
Chlichlia, Katerina
Panayiotidis, Mihalis I.
Pappa, Aglaia
author_facet Voulgaridou, Georgia-Persephoni
Mantso, Theodora
Chlichlia, Katerina
Panayiotidis, Mihalis I.
Pappa, Aglaia
author_sort Voulgaridou, Georgia-Persephoni
collection PubMed
description Aldehyde dehydrogenase 3A1 (ALDH3A1) is a recently characterized corneal crystallin with its exact functions still being unclear. Expressing recombinant human ALDH3A1 has been difficult in Escherichia coli (E. coli) because of low solubility, yield and insufficient purity issues. In this report, we compared different E. coli expression strategies (namely the maltose binding protein; MBP- and the 6-his-tagged expression systems) under conditions of auto-induction and co-expression with E. coli’s molecular chaperones where appropriate. Thus, we aimed to screen the efficiency of these expression strategies in order to improve solubility of recombinant ALDH3A1 when expressed in E. coli. We showed that the MBP- tagged expression in combination with lower-temperature culture conditions resulted in active soluble recombinant ALDH3A1. Expression of the fused 6-his tagged-ALDH3A1 protein resulted in poor solubility and neither lowering temperature culture conditions nor the auto-induction strategy improved its solubility. Furthermore, higher yield of soluble, active native form of 6-his tagged-ALDH3A1 was facilitated through co-expression of the two groups of E. coli’s molecular chaperones, GroES/GroEL and DnaK/DnaJ/GrpE. Convenient one step immobilized affinity chromatography methods were utilized to purify the fused ALDH3A1 hybrids. Both fusion proteins retained their biological activity and could be used directly without removing the fusion tags. Taken together, our results provide a rational option for producing sufficient amounts of soluble and active recombinant ALDH3A1 using the E. coli expression system for conducting functional studies towards elucidating the biological role(s) of this interesting corneal crystallin.
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spelling pubmed-35798472013-02-28 Efficient E. coli Expression Strategies for Production of Soluble Human Crystallin ALDH3A1 Voulgaridou, Georgia-Persephoni Mantso, Theodora Chlichlia, Katerina Panayiotidis, Mihalis I. Pappa, Aglaia PLoS One Research Article Aldehyde dehydrogenase 3A1 (ALDH3A1) is a recently characterized corneal crystallin with its exact functions still being unclear. Expressing recombinant human ALDH3A1 has been difficult in Escherichia coli (E. coli) because of low solubility, yield and insufficient purity issues. In this report, we compared different E. coli expression strategies (namely the maltose binding protein; MBP- and the 6-his-tagged expression systems) under conditions of auto-induction and co-expression with E. coli’s molecular chaperones where appropriate. Thus, we aimed to screen the efficiency of these expression strategies in order to improve solubility of recombinant ALDH3A1 when expressed in E. coli. We showed that the MBP- tagged expression in combination with lower-temperature culture conditions resulted in active soluble recombinant ALDH3A1. Expression of the fused 6-his tagged-ALDH3A1 protein resulted in poor solubility and neither lowering temperature culture conditions nor the auto-induction strategy improved its solubility. Furthermore, higher yield of soluble, active native form of 6-his tagged-ALDH3A1 was facilitated through co-expression of the two groups of E. coli’s molecular chaperones, GroES/GroEL and DnaK/DnaJ/GrpE. Convenient one step immobilized affinity chromatography methods were utilized to purify the fused ALDH3A1 hybrids. Both fusion proteins retained their biological activity and could be used directly without removing the fusion tags. Taken together, our results provide a rational option for producing sufficient amounts of soluble and active recombinant ALDH3A1 using the E. coli expression system for conducting functional studies towards elucidating the biological role(s) of this interesting corneal crystallin. Public Library of Science 2013-02-22 /pmc/articles/PMC3579847/ /pubmed/23451057 http://dx.doi.org/10.1371/journal.pone.0056582 Text en © 2013 Voulgaridou et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Voulgaridou, Georgia-Persephoni
Mantso, Theodora
Chlichlia, Katerina
Panayiotidis, Mihalis I.
Pappa, Aglaia
Efficient E. coli Expression Strategies for Production of Soluble Human Crystallin ALDH3A1
title Efficient E. coli Expression Strategies for Production of Soluble Human Crystallin ALDH3A1
title_full Efficient E. coli Expression Strategies for Production of Soluble Human Crystallin ALDH3A1
title_fullStr Efficient E. coli Expression Strategies for Production of Soluble Human Crystallin ALDH3A1
title_full_unstemmed Efficient E. coli Expression Strategies for Production of Soluble Human Crystallin ALDH3A1
title_short Efficient E. coli Expression Strategies for Production of Soluble Human Crystallin ALDH3A1
title_sort efficient e. coli expression strategies for production of soluble human crystallin aldh3a1
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3579847/
https://www.ncbi.nlm.nih.gov/pubmed/23451057
http://dx.doi.org/10.1371/journal.pone.0056582
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