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Novel Strategy of Using Methyl Esters as Slow Release Methanol Source during Lipase Expression by mut(+) Pichia pastoris X33

One of the major issues with heterologous production of proteins in Pichia pastoris X33 under AOX1 promoter is repeated methanol induction. To obviate repeated methanol induction, methyl esters were used as a slow release source of methanol in lipase expressing mut(+) recombinant. Experimental desig...

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Autores principales: Kumari, Arti, Gupta, Rani
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4149357/
https://www.ncbi.nlm.nih.gov/pubmed/25170843
http://dx.doi.org/10.1371/journal.pone.0104272
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author Kumari, Arti
Gupta, Rani
author_facet Kumari, Arti
Gupta, Rani
author_sort Kumari, Arti
collection PubMed
description One of the major issues with heterologous production of proteins in Pichia pastoris X33 under AOX1 promoter is repeated methanol induction. To obviate repeated methanol induction, methyl esters were used as a slow release source of methanol in lipase expressing mut(+) recombinant. Experimental design was based on the strategy that in presence of lipase, methyl esters can be hydrolysed to release their products as methanol and fatty acid. Hence, upon break down of methyl esters by lipase, first methanol will be used as a carbon source and inducer. Then P. pastoris can switch over to fatty acid as a carbon source for multiplication and biomass maintenance till further induction by methyl esters. We validated this strategy using recombinant P. pastoris expressing Lip A, Lip C from Trichosporon asahii and Lip11 from Yarrowia lipolytica. We found that the optimum lipase yield under repeated methanol induction after 120 h was 32866 U/L, 28271 U/L and 21978 U/L for Lip C, Lip A and Lip 11 respectively. In addition, we found that a single dose of methyl ester supported higher production than repeated methanol induction. Among various methyl esters tested, methyl oleate (0.5%) caused 1.2 fold higher yield for LipA and LipC and 1.4 fold for Lip11 after 120 h of induction. Sequential utilization of methanol and oleic acid by P. pastoris was observed and was supported by differential peroxisome proliferation studies by transmission electron microscopy. Our study identifies a novel strategy of using methyl esters as slow release methanol source during lipase expression.
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spelling pubmed-41493572014-09-03 Novel Strategy of Using Methyl Esters as Slow Release Methanol Source during Lipase Expression by mut(+) Pichia pastoris X33 Kumari, Arti Gupta, Rani PLoS One Research Article One of the major issues with heterologous production of proteins in Pichia pastoris X33 under AOX1 promoter is repeated methanol induction. To obviate repeated methanol induction, methyl esters were used as a slow release source of methanol in lipase expressing mut(+) recombinant. Experimental design was based on the strategy that in presence of lipase, methyl esters can be hydrolysed to release their products as methanol and fatty acid. Hence, upon break down of methyl esters by lipase, first methanol will be used as a carbon source and inducer. Then P. pastoris can switch over to fatty acid as a carbon source for multiplication and biomass maintenance till further induction by methyl esters. We validated this strategy using recombinant P. pastoris expressing Lip A, Lip C from Trichosporon asahii and Lip11 from Yarrowia lipolytica. We found that the optimum lipase yield under repeated methanol induction after 120 h was 32866 U/L, 28271 U/L and 21978 U/L for Lip C, Lip A and Lip 11 respectively. In addition, we found that a single dose of methyl ester supported higher production than repeated methanol induction. Among various methyl esters tested, methyl oleate (0.5%) caused 1.2 fold higher yield for LipA and LipC and 1.4 fold for Lip11 after 120 h of induction. Sequential utilization of methanol and oleic acid by P. pastoris was observed and was supported by differential peroxisome proliferation studies by transmission electron microscopy. Our study identifies a novel strategy of using methyl esters as slow release methanol source during lipase expression. Public Library of Science 2014-08-29 /pmc/articles/PMC4149357/ /pubmed/25170843 http://dx.doi.org/10.1371/journal.pone.0104272 Text en © 2014 Kumari, Gupta 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
Kumari, Arti
Gupta, Rani
Novel Strategy of Using Methyl Esters as Slow Release Methanol Source during Lipase Expression by mut(+) Pichia pastoris X33
title Novel Strategy of Using Methyl Esters as Slow Release Methanol Source during Lipase Expression by mut(+) Pichia pastoris X33
title_full Novel Strategy of Using Methyl Esters as Slow Release Methanol Source during Lipase Expression by mut(+) Pichia pastoris X33
title_fullStr Novel Strategy of Using Methyl Esters as Slow Release Methanol Source during Lipase Expression by mut(+) Pichia pastoris X33
title_full_unstemmed Novel Strategy of Using Methyl Esters as Slow Release Methanol Source during Lipase Expression by mut(+) Pichia pastoris X33
title_short Novel Strategy of Using Methyl Esters as Slow Release Methanol Source during Lipase Expression by mut(+) Pichia pastoris X33
title_sort novel strategy of using methyl esters as slow release methanol source during lipase expression by mut(+) pichia pastoris x33
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4149357/
https://www.ncbi.nlm.nih.gov/pubmed/25170843
http://dx.doi.org/10.1371/journal.pone.0104272
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