Enhancing production of lipase MAS1 from marine Streptomyces sp. strain in Pichia pastoris by chaperones co-expression
Background: A thermostable lipase MAS1 from marine Streptomyces sp. strain was considered as a potential biocatalyst for industrial application, but its production level was relatively low. Here, the effect of chaperones co-expression on the secretory expression of lipase MAS1 in Pichia pastoris was...
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doaj-8cf764d7deb74d8cb556143c1e5b8d2e2020-11-25T00:29:41ZengElsevierElectronic Journal of Biotechnology0717-34582016-07-0122C626710.1016/j.ejbt.2016.06.003Enhancing production of lipase MAS1 from marine Streptomyces sp. strain in Pichia pastoris by chaperones co-expressionDongming Lan0Man Qu1Bo Yang2Yonghua Wang3College of Food Sciences and Engineering, South China University of Technology, Guangzhou 510640, PR ChinaCollege of Food Sciences and Engineering, South China University of Technology, Guangzhou 510640, PR ChinaSchool of Bioscience and Bioengineering, South China University of Technology, Guangzhou 510006, PR ChinaCollege of Food Sciences and Engineering, South China University of Technology, Guangzhou 510640, PR ChinaBackground: A thermostable lipase MAS1 from marine Streptomyces sp. strain was considered as a potential biocatalyst for industrial application, but its production level was relatively low. Here, the effect of chaperones co-expression on the secretory expression of lipase MAS1 in Pichia pastoris was investigated. Result: Co-expression of protein disulfide isomerase (PDI), HAC1 and immunoglobulin binding protein could increase the expression level of lipase MAS1, whereas co-expression of Vitreoscilla hemoglobin showed a negative effect to the lipase MAS1 production. Among them, PDI co-expression increased lipase MAS1 expression level by 1.7-fold compared to the control strain harboring only the MAS1 gene. Furthermore, optimizing production of lipase MAS1 with Pichia pastoris strain X-33/MAS1-PDI in a 30-L bioreactor were conducted. Lower induction temperature was found to have a benefit effect for lipase MAS1 production. Lipase activity at 24 and 22°C showed 1.7 and 2.1-fold to that at 30°C, respectively. Among the induction pH tested, the highest lipase activity was obtained at pH 6.0 with activity of 440 U/mL after 144 h fermentation. Conclusion: Our work showed a good example for improving the production of recombinant enzymes in Pichia pastoris via chaperon co-expression and fermentation condition optimization.http://www.sciencedirect.com/science/article/pii/S0717345816300409Fermentation optimizationMethanol fed-batchProtein disulfide isomeraseVitreoscilla hemoglobin |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Dongming Lan Man Qu Bo Yang Yonghua Wang |
spellingShingle |
Dongming Lan Man Qu Bo Yang Yonghua Wang Enhancing production of lipase MAS1 from marine Streptomyces sp. strain in Pichia pastoris by chaperones co-expression Electronic Journal of Biotechnology Fermentation optimization Methanol fed-batch Protein disulfide isomerase Vitreoscilla hemoglobin |
author_facet |
Dongming Lan Man Qu Bo Yang Yonghua Wang |
author_sort |
Dongming Lan |
title |
Enhancing production of lipase MAS1 from marine Streptomyces sp. strain in Pichia pastoris by chaperones co-expression |
title_short |
Enhancing production of lipase MAS1 from marine Streptomyces sp. strain in Pichia pastoris by chaperones co-expression |
title_full |
Enhancing production of lipase MAS1 from marine Streptomyces sp. strain in Pichia pastoris by chaperones co-expression |
title_fullStr |
Enhancing production of lipase MAS1 from marine Streptomyces sp. strain in Pichia pastoris by chaperones co-expression |
title_full_unstemmed |
Enhancing production of lipase MAS1 from marine Streptomyces sp. strain in Pichia pastoris by chaperones co-expression |
title_sort |
enhancing production of lipase mas1 from marine streptomyces sp. strain in pichia pastoris by chaperones co-expression |
publisher |
Elsevier |
series |
Electronic Journal of Biotechnology |
issn |
0717-3458 |
publishDate |
2016-07-01 |
description |
Background: A thermostable lipase MAS1 from marine Streptomyces sp. strain was considered as a potential biocatalyst for industrial application, but its production level was relatively low. Here, the effect of chaperones co-expression on the secretory expression of lipase MAS1 in Pichia pastoris was investigated.
Result: Co-expression of protein disulfide isomerase (PDI), HAC1 and immunoglobulin binding protein could increase the expression level of lipase MAS1, whereas co-expression of Vitreoscilla hemoglobin showed a negative effect to the lipase MAS1 production. Among them, PDI co-expression increased lipase MAS1 expression level by 1.7-fold compared to the control strain harboring only the MAS1 gene. Furthermore, optimizing production of lipase MAS1 with Pichia pastoris strain X-33/MAS1-PDI in a 30-L bioreactor were conducted. Lower induction temperature was found to have a benefit effect for lipase MAS1 production. Lipase activity at 24 and 22°C showed 1.7 and 2.1-fold to that at 30°C, respectively. Among the induction pH tested, the highest lipase activity was obtained at pH 6.0 with activity of 440 U/mL after 144 h fermentation.
Conclusion: Our work showed a good example for improving the production of recombinant enzymes in Pichia pastoris via chaperon co-expression and fermentation condition optimization. |
topic |
Fermentation optimization Methanol fed-batch Protein disulfide isomerase Vitreoscilla hemoglobin |
url |
http://www.sciencedirect.com/science/article/pii/S0717345816300409 |
work_keys_str_mv |
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