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Immobilization of Pichia pastoris cells containing alcohol oxidase activity

BACKGROUND AND OBJECTIVES: The attempts were made to describe the development of a whole cell immobilization of P. pastoris by entrapping the cells in polyacrylamide gel beads. The alcohol oxidase activity of the whole cell Pichia pastoris was evaluated in comparison with yeast biomass production. M...

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Autores principales: Maleknia, S, Ahmadi, H, Norouzian, D
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Tehran University of Medical Sciences 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3330185/
https://www.ncbi.nlm.nih.gov/pubmed/22530090
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author Maleknia, S
Ahmadi, H
Norouzian, D
author_facet Maleknia, S
Ahmadi, H
Norouzian, D
author_sort Maleknia, S
collection PubMed
description BACKGROUND AND OBJECTIVES: The attempts were made to describe the development of a whole cell immobilization of P. pastoris by entrapping the cells in polyacrylamide gel beads. The alcohol oxidase activity of the whole cell Pichia pastoris was evaluated in comparison with yeast biomass production. MATERIALS AND METHODS: Methylotrophic yeast P. pastoris was obtained from Collection of Standard Microorganisms, Department of Bacterial Vaccines, Pasteur Institute of Iran (CSMPI). Stock culture was maintained on YPD agar plates. Alcohol oxidase was strongly induced by addition of 0.5% methanol as the carbon source. The cells were harvested by centrifugation then permeabilized. Finally the cells were immobilized in polyacrylamide gel beads. The activity of alcohol oxidase was determined by method of Tane et al. RESULTS: At the end of the logarithmic phase of cell culture, the alcohol oxidase activity of the whole cell P. Pastoris reached the highest level. In comparison, the alcohol oxidase activity was measured in an immobilized P. pastoris when entrapped in polyacrylamide gel beads. The alcohol oxidase activity of cells was induced by addition of 0.5% methanol as the carbon source. The cells were permeabilized by cetyltrimethylammonium bromide (CTAB) and immobilized. CTAB was also found to increase the gel permeability. Alcohol oxidase activity of immobilized cells was then quantitated by ABTS/POD spectrophotometric method at OD (420.) There was a 14% increase in alcohol oxidase activity in immobilized cells as compared with free cells. By addition of 2-butanol as a substrate, the relative activity of alcohol oxidase was significantly higher as compared with other substrates added to the reaction media. CONCLUSION: Immobilization of cells could eliminate lengthy and expensive procedures of enzyme separation and purification, protect and stabilize enzyme activity, and perform easy separation of the enzyme from the reaction media.
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spelling pubmed-33301852012-04-23 Immobilization of Pichia pastoris cells containing alcohol oxidase activity Maleknia, S Ahmadi, H Norouzian, D Iran J Microbiol Original Article BACKGROUND AND OBJECTIVES: The attempts were made to describe the development of a whole cell immobilization of P. pastoris by entrapping the cells in polyacrylamide gel beads. The alcohol oxidase activity of the whole cell Pichia pastoris was evaluated in comparison with yeast biomass production. MATERIALS AND METHODS: Methylotrophic yeast P. pastoris was obtained from Collection of Standard Microorganisms, Department of Bacterial Vaccines, Pasteur Institute of Iran (CSMPI). Stock culture was maintained on YPD agar plates. Alcohol oxidase was strongly induced by addition of 0.5% methanol as the carbon source. The cells were harvested by centrifugation then permeabilized. Finally the cells were immobilized in polyacrylamide gel beads. The activity of alcohol oxidase was determined by method of Tane et al. RESULTS: At the end of the logarithmic phase of cell culture, the alcohol oxidase activity of the whole cell P. Pastoris reached the highest level. In comparison, the alcohol oxidase activity was measured in an immobilized P. pastoris when entrapped in polyacrylamide gel beads. The alcohol oxidase activity of cells was induced by addition of 0.5% methanol as the carbon source. The cells were permeabilized by cetyltrimethylammonium bromide (CTAB) and immobilized. CTAB was also found to increase the gel permeability. Alcohol oxidase activity of immobilized cells was then quantitated by ABTS/POD spectrophotometric method at OD (420.) There was a 14% increase in alcohol oxidase activity in immobilized cells as compared with free cells. By addition of 2-butanol as a substrate, the relative activity of alcohol oxidase was significantly higher as compared with other substrates added to the reaction media. CONCLUSION: Immobilization of cells could eliminate lengthy and expensive procedures of enzyme separation and purification, protect and stabilize enzyme activity, and perform easy separation of the enzyme from the reaction media. Tehran University of Medical Sciences 2011-12 /pmc/articles/PMC3330185/ /pubmed/22530090 Text en © 2011 Iranian Society of Microbiology & Tehran University of Medical Sciences http://creativecommons.org/licenses/by/2.0/ 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 work is properly cited.
spellingShingle Original Article
Maleknia, S
Ahmadi, H
Norouzian, D
Immobilization of Pichia pastoris cells containing alcohol oxidase activity
title Immobilization of Pichia pastoris cells containing alcohol oxidase activity
title_full Immobilization of Pichia pastoris cells containing alcohol oxidase activity
title_fullStr Immobilization of Pichia pastoris cells containing alcohol oxidase activity
title_full_unstemmed Immobilization of Pichia pastoris cells containing alcohol oxidase activity
title_short Immobilization of Pichia pastoris cells containing alcohol oxidase activity
title_sort immobilization of pichia pastoris cells containing alcohol oxidase activity
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3330185/
https://www.ncbi.nlm.nih.gov/pubmed/22530090
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