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A Gene Optimization Strategy that Enhances Production of Fully Functional P-Glycoprotein in Pichia pastoris

BACKGROUND: Structural and biochemical studies of mammalian membrane proteins remain hampered by inefficient production of pure protein. We explored codon optimization based on highly expressed Pichia pastoris genes to enhance co-translational folding and production of P-glycoprotein (Pgp), an ATP-d...

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Autores principales: Bai, Jiangping, Swartz, Douglas J., Protasevich, Irina I., Brouillette, Christie G., Harrell, Patina M., Hildebrandt, Ellen, Gasser, Brigitte, Mattanovich, Diethard, Ward, Andrew, Chang, Geoffrey, Urbatsch, Ina L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3149604/
https://www.ncbi.nlm.nih.gov/pubmed/21826197
http://dx.doi.org/10.1371/journal.pone.0022577
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author Bai, Jiangping
Swartz, Douglas J.
Protasevich, Irina I.
Brouillette, Christie G.
Harrell, Patina M.
Hildebrandt, Ellen
Gasser, Brigitte
Mattanovich, Diethard
Ward, Andrew
Chang, Geoffrey
Urbatsch, Ina L.
author_facet Bai, Jiangping
Swartz, Douglas J.
Protasevich, Irina I.
Brouillette, Christie G.
Harrell, Patina M.
Hildebrandt, Ellen
Gasser, Brigitte
Mattanovich, Diethard
Ward, Andrew
Chang, Geoffrey
Urbatsch, Ina L.
author_sort Bai, Jiangping
collection PubMed
description BACKGROUND: Structural and biochemical studies of mammalian membrane proteins remain hampered by inefficient production of pure protein. We explored codon optimization based on highly expressed Pichia pastoris genes to enhance co-translational folding and production of P-glycoprotein (Pgp), an ATP-dependent drug efflux pump involved in multidrug resistance of cancers. METHODOLOGY/PRINCIPAL FINDINGS: Codon-optimized “Opti-Pgp” and wild-type Pgp, identical in primary protein sequence, were rigorously analyzed for differences in function or solution structure. Yeast expression levels and yield of purified protein from P. pastoris (∼130 mg per kg cells) were about three-fold higher for Opti-Pgp than for wild-type protein. Opti-Pgp conveyed full in vivo drug resistance against multiple anticancer and fungicidal drugs. ATP hydrolysis by purified Opti-Pgp was strongly stimulated ∼15-fold by verapamil and inhibited by cyclosporine A with binding constants of 4.2±2.2 µM and 1.1±0.26 µM, indistinguishable from wild-type Pgp. Maximum turnover number was 2.1±0.28 µmol/min/mg and was enhanced by 1.2-fold over wild-type Pgp, likely due to higher purity of Opti-Pgp preparations. Analysis of purified wild-type and Opti-Pgp by CD, DSC and limited proteolysis suggested similar secondary and ternary structure. Addition of lipid increased the thermal stability from T(m) ∼40°C to 49°C, and the total unfolding enthalpy. The increase in folded state may account for the increase in drug-stimulated ATPase activity seen in presence of lipids. CONCLUSION: The significantly higher yields of protein in the native folded state, higher purity and improved function establish the value of our gene optimization approach, and provide a basis to improve production of other membrane proteins.
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spelling pubmed-31496042011-08-08 A Gene Optimization Strategy that Enhances Production of Fully Functional P-Glycoprotein in Pichia pastoris Bai, Jiangping Swartz, Douglas J. Protasevich, Irina I. Brouillette, Christie G. Harrell, Patina M. Hildebrandt, Ellen Gasser, Brigitte Mattanovich, Diethard Ward, Andrew Chang, Geoffrey Urbatsch, Ina L. PLoS One Research Article BACKGROUND: Structural and biochemical studies of mammalian membrane proteins remain hampered by inefficient production of pure protein. We explored codon optimization based on highly expressed Pichia pastoris genes to enhance co-translational folding and production of P-glycoprotein (Pgp), an ATP-dependent drug efflux pump involved in multidrug resistance of cancers. METHODOLOGY/PRINCIPAL FINDINGS: Codon-optimized “Opti-Pgp” and wild-type Pgp, identical in primary protein sequence, were rigorously analyzed for differences in function or solution structure. Yeast expression levels and yield of purified protein from P. pastoris (∼130 mg per kg cells) were about three-fold higher for Opti-Pgp than for wild-type protein. Opti-Pgp conveyed full in vivo drug resistance against multiple anticancer and fungicidal drugs. ATP hydrolysis by purified Opti-Pgp was strongly stimulated ∼15-fold by verapamil and inhibited by cyclosporine A with binding constants of 4.2±2.2 µM and 1.1±0.26 µM, indistinguishable from wild-type Pgp. Maximum turnover number was 2.1±0.28 µmol/min/mg and was enhanced by 1.2-fold over wild-type Pgp, likely due to higher purity of Opti-Pgp preparations. Analysis of purified wild-type and Opti-Pgp by CD, DSC and limited proteolysis suggested similar secondary and ternary structure. Addition of lipid increased the thermal stability from T(m) ∼40°C to 49°C, and the total unfolding enthalpy. The increase in folded state may account for the increase in drug-stimulated ATPase activity seen in presence of lipids. CONCLUSION: The significantly higher yields of protein in the native folded state, higher purity and improved function establish the value of our gene optimization approach, and provide a basis to improve production of other membrane proteins. Public Library of Science 2011-08-03 /pmc/articles/PMC3149604/ /pubmed/21826197 http://dx.doi.org/10.1371/journal.pone.0022577 Text en Bai 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
Bai, Jiangping
Swartz, Douglas J.
Protasevich, Irina I.
Brouillette, Christie G.
Harrell, Patina M.
Hildebrandt, Ellen
Gasser, Brigitte
Mattanovich, Diethard
Ward, Andrew
Chang, Geoffrey
Urbatsch, Ina L.
A Gene Optimization Strategy that Enhances Production of Fully Functional P-Glycoprotein in Pichia pastoris
title A Gene Optimization Strategy that Enhances Production of Fully Functional P-Glycoprotein in Pichia pastoris
title_full A Gene Optimization Strategy that Enhances Production of Fully Functional P-Glycoprotein in Pichia pastoris
title_fullStr A Gene Optimization Strategy that Enhances Production of Fully Functional P-Glycoprotein in Pichia pastoris
title_full_unstemmed A Gene Optimization Strategy that Enhances Production of Fully Functional P-Glycoprotein in Pichia pastoris
title_short A Gene Optimization Strategy that Enhances Production of Fully Functional P-Glycoprotein in Pichia pastoris
title_sort gene optimization strategy that enhances production of fully functional p-glycoprotein in pichia pastoris
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3149604/
https://www.ncbi.nlm.nih.gov/pubmed/21826197
http://dx.doi.org/10.1371/journal.pone.0022577
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