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Expression and Purification of Chemokine MIP-3α (CCL20) through a Calmodulin-Fusion Protein System

Human macrophage inflammatory protein 3α (MIP-3α), also known as CCL20, is a 70 amino acid chemokine that selectively binds and activates chemokine receptor 6 (CCR6). This chemokine is responsible for inducing the migration of immature dendritic cells, effector, or memory T-cells, and B-cells. Moreo...

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Autores principales: Ramamourthy, Gopal, Arias, Mauricio, Nguyen, Leonard T., Ishida, Hiroaki, Vogel, Hans J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6352211/
https://www.ncbi.nlm.nih.gov/pubmed/30626048
http://dx.doi.org/10.3390/microorganisms7010008
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author Ramamourthy, Gopal
Arias, Mauricio
Nguyen, Leonard T.
Ishida, Hiroaki
Vogel, Hans J.
author_facet Ramamourthy, Gopal
Arias, Mauricio
Nguyen, Leonard T.
Ishida, Hiroaki
Vogel, Hans J.
author_sort Ramamourthy, Gopal
collection PubMed
description Human macrophage inflammatory protein 3α (MIP-3α), also known as CCL20, is a 70 amino acid chemokine that selectively binds and activates chemokine receptor 6 (CCR6). This chemokine is responsible for inducing the migration of immature dendritic cells, effector, or memory T-cells, and B-cells. Moreover, the MIP-3α protein has been shown to display direct antimicrobial, antiviral and antiprotozoal activities. Because of the potential therapeutic uses of this protein, the efficient production of MIP-3α is of great interest. However, bacterial recombinant production of the MIP-3α protein has been limited by the toxicity of this extremely basic protein (pI 9.7) toward prokaryotic cells, and by solubility problems during expression and purification. In an attempt to overcome these issues, we have investigated the bacterial recombinant expression of MIP-3α by using several common expression and fusion tags, including 6× histidine (His), small ubiquitin modifier protein (SUMO), thioredoxin (TRX), ketosteroid isomerase (KSI), and maltose binding protein (MBP). We have also evaluated a recently introduced calmodulin (CaM)-tag that has been used for the effective expression of many basic antimicrobial peptides (AMPs). Here, we show that the CaM fusion tag system effectively expressed soluble MIP-3α in the cytoplasm of Escherichia coli with good yields. Rapid purification was facilitated by the His-tag that was integrated in the CaM-fusion protein system. Multidimensional nuclear magnetic resonance (NMR) studies demonstrated that the recombinant protein was properly folded, with the correct formation of disulfide bonds. In addition, the recombinant MIP-3α had antibacterial activity, and was shown to inhibit the formation of Pseudomonas aeruginosa biofilms.
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spelling pubmed-63522112019-02-01 Expression and Purification of Chemokine MIP-3α (CCL20) through a Calmodulin-Fusion Protein System Ramamourthy, Gopal Arias, Mauricio Nguyen, Leonard T. Ishida, Hiroaki Vogel, Hans J. Microorganisms Article Human macrophage inflammatory protein 3α (MIP-3α), also known as CCL20, is a 70 amino acid chemokine that selectively binds and activates chemokine receptor 6 (CCR6). This chemokine is responsible for inducing the migration of immature dendritic cells, effector, or memory T-cells, and B-cells. Moreover, the MIP-3α protein has been shown to display direct antimicrobial, antiviral and antiprotozoal activities. Because of the potential therapeutic uses of this protein, the efficient production of MIP-3α is of great interest. However, bacterial recombinant production of the MIP-3α protein has been limited by the toxicity of this extremely basic protein (pI 9.7) toward prokaryotic cells, and by solubility problems during expression and purification. In an attempt to overcome these issues, we have investigated the bacterial recombinant expression of MIP-3α by using several common expression and fusion tags, including 6× histidine (His), small ubiquitin modifier protein (SUMO), thioredoxin (TRX), ketosteroid isomerase (KSI), and maltose binding protein (MBP). We have also evaluated a recently introduced calmodulin (CaM)-tag that has been used for the effective expression of many basic antimicrobial peptides (AMPs). Here, we show that the CaM fusion tag system effectively expressed soluble MIP-3α in the cytoplasm of Escherichia coli with good yields. Rapid purification was facilitated by the His-tag that was integrated in the CaM-fusion protein system. Multidimensional nuclear magnetic resonance (NMR) studies demonstrated that the recombinant protein was properly folded, with the correct formation of disulfide bonds. In addition, the recombinant MIP-3α had antibacterial activity, and was shown to inhibit the formation of Pseudomonas aeruginosa biofilms. MDPI 2019-01-08 /pmc/articles/PMC6352211/ /pubmed/30626048 http://dx.doi.org/10.3390/microorganisms7010008 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ramamourthy, Gopal
Arias, Mauricio
Nguyen, Leonard T.
Ishida, Hiroaki
Vogel, Hans J.
Expression and Purification of Chemokine MIP-3α (CCL20) through a Calmodulin-Fusion Protein System
title Expression and Purification of Chemokine MIP-3α (CCL20) through a Calmodulin-Fusion Protein System
title_full Expression and Purification of Chemokine MIP-3α (CCL20) through a Calmodulin-Fusion Protein System
title_fullStr Expression and Purification of Chemokine MIP-3α (CCL20) through a Calmodulin-Fusion Protein System
title_full_unstemmed Expression and Purification of Chemokine MIP-3α (CCL20) through a Calmodulin-Fusion Protein System
title_short Expression and Purification of Chemokine MIP-3α (CCL20) through a Calmodulin-Fusion Protein System
title_sort expression and purification of chemokine mip-3α (ccl20) through a calmodulin-fusion protein system
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6352211/
https://www.ncbi.nlm.nih.gov/pubmed/30626048
http://dx.doi.org/10.3390/microorganisms7010008
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