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Simple high-cell density fed-batch technique for high-level recombinant protein production with Pichia pastoris: Application to intracellular production of Hepatitis B surface antigen

BACKGROUND: Hepatitis B is a serious global public health concern. Though a safe and efficacious recombinant vaccine is available, its use in several resource-poor countries is limited by cost. We have investigated the production of Hepatitis B virus surface antigen (HBsAg) using the yeast Pichia pa...

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Autores principales: Gurramkonda, Chandrasekhar, Adnan, Ahmad, Gäbel, Thomas, Lünsdorf, Heinrich, Ross, Anton, Nemani, Satish Kumar, Swaminathan, Sathyamangalam, Khanna, Navin, Rinas, Ursula
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2646686/
https://www.ncbi.nlm.nih.gov/pubmed/19208244
http://dx.doi.org/10.1186/1475-2859-8-13
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author Gurramkonda, Chandrasekhar
Adnan, Ahmad
Gäbel, Thomas
Lünsdorf, Heinrich
Ross, Anton
Nemani, Satish Kumar
Swaminathan, Sathyamangalam
Khanna, Navin
Rinas, Ursula
author_facet Gurramkonda, Chandrasekhar
Adnan, Ahmad
Gäbel, Thomas
Lünsdorf, Heinrich
Ross, Anton
Nemani, Satish Kumar
Swaminathan, Sathyamangalam
Khanna, Navin
Rinas, Ursula
author_sort Gurramkonda, Chandrasekhar
collection PubMed
description BACKGROUND: Hepatitis B is a serious global public health concern. Though a safe and efficacious recombinant vaccine is available, its use in several resource-poor countries is limited by cost. We have investigated the production of Hepatitis B virus surface antigen (HBsAg) using the yeast Pichia pastoris GS115 by inserting the HBsAg gene into the alcohol oxidase 1 locus. RESULTS: Large-scale production was optimized by developing a simple fed-batch process leading to enhanced product titers. Cells were first grown rapidly to high-cell density in a batch process using a simple defined medium with low salt and high glycerol concentrations. Induction of recombinant product synthesis was carried out using rather drastic conditions, namely through the addition of methanol to a final concentration of 6 g L(-1). This methanol concentration was kept constant for the remainder of the cultivation through continuous methanol feeding based on the on-line signal of a flame ionization detector employed as methanol analyzer in the off-gas stream. Using this robust feeding protocol, maximum concentrations of ~7 grams HBsAg per liter culture broth were obtained. The amount of soluble HBsAg, competent for assembly into characteristic virus-like particles (VLPs), an attribute critical to its immunogenicity and efficacy as a hepatitis B vaccine, reached 2.3 grams per liter of culture broth. CONCLUSION: In comparison to the highest yields reported so far, our simple cultivation process resulted in an ~7 fold enhancement in total HBsAg production with more than 30% of soluble protein competent for assembly into VLPs. This work opens up the possibility of significantly reducing the cost of vaccine production with implications for expanding hepatitis B vaccination in resource-poor countries.
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spelling pubmed-26466862009-02-24 Simple high-cell density fed-batch technique for high-level recombinant protein production with Pichia pastoris: Application to intracellular production of Hepatitis B surface antigen Gurramkonda, Chandrasekhar Adnan, Ahmad Gäbel, Thomas Lünsdorf, Heinrich Ross, Anton Nemani, Satish Kumar Swaminathan, Sathyamangalam Khanna, Navin Rinas, Ursula Microb Cell Fact Research BACKGROUND: Hepatitis B is a serious global public health concern. Though a safe and efficacious recombinant vaccine is available, its use in several resource-poor countries is limited by cost. We have investigated the production of Hepatitis B virus surface antigen (HBsAg) using the yeast Pichia pastoris GS115 by inserting the HBsAg gene into the alcohol oxidase 1 locus. RESULTS: Large-scale production was optimized by developing a simple fed-batch process leading to enhanced product titers. Cells were first grown rapidly to high-cell density in a batch process using a simple defined medium with low salt and high glycerol concentrations. Induction of recombinant product synthesis was carried out using rather drastic conditions, namely through the addition of methanol to a final concentration of 6 g L(-1). This methanol concentration was kept constant for the remainder of the cultivation through continuous methanol feeding based on the on-line signal of a flame ionization detector employed as methanol analyzer in the off-gas stream. Using this robust feeding protocol, maximum concentrations of ~7 grams HBsAg per liter culture broth were obtained. The amount of soluble HBsAg, competent for assembly into characteristic virus-like particles (VLPs), an attribute critical to its immunogenicity and efficacy as a hepatitis B vaccine, reached 2.3 grams per liter of culture broth. CONCLUSION: In comparison to the highest yields reported so far, our simple cultivation process resulted in an ~7 fold enhancement in total HBsAg production with more than 30% of soluble protein competent for assembly into VLPs. This work opens up the possibility of significantly reducing the cost of vaccine production with implications for expanding hepatitis B vaccination in resource-poor countries. BioMed Central 2009-02-10 /pmc/articles/PMC2646686/ /pubmed/19208244 http://dx.doi.org/10.1186/1475-2859-8-13 Text en Copyright © 2009 Gurramkonda et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( (http://creativecommons.org/licenses/by/2.0) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Gurramkonda, Chandrasekhar
Adnan, Ahmad
Gäbel, Thomas
Lünsdorf, Heinrich
Ross, Anton
Nemani, Satish Kumar
Swaminathan, Sathyamangalam
Khanna, Navin
Rinas, Ursula
Simple high-cell density fed-batch technique for high-level recombinant protein production with Pichia pastoris: Application to intracellular production of Hepatitis B surface antigen
title Simple high-cell density fed-batch technique for high-level recombinant protein production with Pichia pastoris: Application to intracellular production of Hepatitis B surface antigen
title_full Simple high-cell density fed-batch technique for high-level recombinant protein production with Pichia pastoris: Application to intracellular production of Hepatitis B surface antigen
title_fullStr Simple high-cell density fed-batch technique for high-level recombinant protein production with Pichia pastoris: Application to intracellular production of Hepatitis B surface antigen
title_full_unstemmed Simple high-cell density fed-batch technique for high-level recombinant protein production with Pichia pastoris: Application to intracellular production of Hepatitis B surface antigen
title_short Simple high-cell density fed-batch technique for high-level recombinant protein production with Pichia pastoris: Application to intracellular production of Hepatitis B surface antigen
title_sort simple high-cell density fed-batch technique for high-level recombinant protein production with pichia pastoris: application to intracellular production of hepatitis b surface antigen
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2646686/
https://www.ncbi.nlm.nih.gov/pubmed/19208244
http://dx.doi.org/10.1186/1475-2859-8-13
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