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Engineering the expression system for Komagataella phaffii (Pichia pastoris): an attempt to develop a methanol-free expression system

The construction of a methanol-free expression system of Komagataella phaffii (Pichia pastoris) was attempted by engineering a strong methanol-inducible DAS1 promoter using Citrobacter braakii phytase production as a model case. Constitutive expression of KpTRM1, formerly PRM1—a positive transcripti...

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Autores principales: Takagi, Shinobu, Tsutsumi, Noriko, Terui, Yuji, Kong, XiangYu, Yurimoto, Hiroya, Sakai, Yasuyoshi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6736287/
https://www.ncbi.nlm.nih.gov/pubmed/31408151
http://dx.doi.org/10.1093/femsyr/foz059
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author Takagi, Shinobu
Tsutsumi, Noriko
Terui, Yuji
Kong, XiangYu
Yurimoto, Hiroya
Sakai, Yasuyoshi
author_facet Takagi, Shinobu
Tsutsumi, Noriko
Terui, Yuji
Kong, XiangYu
Yurimoto, Hiroya
Sakai, Yasuyoshi
author_sort Takagi, Shinobu
collection PubMed
description The construction of a methanol-free expression system of Komagataella phaffii (Pichia pastoris) was attempted by engineering a strong methanol-inducible DAS1 promoter using Citrobacter braakii phytase production as a model case. Constitutive expression of KpTRM1, formerly PRM1—a positive transcription regulator for methanol-utilization (MUT) genes of K. phaffii,was demonstrated to produce phytase without addition of methanol, especially when a DAS1 promoter was used but not an AOX1 promoter. Another positive regulator, Mxr1p, did not have the same effect on the DAS1 promoter, while it was more effective than KpTrmp1 on the AOX1 promoter. Removing a potential upstream repression sequence (URS) and multiplying UAS1(DAS1) in the DAS1 promoter significantly enhanced the yield of C. braakii phytase with methanol-feeding, which surpassed the native AOX1 promoter by 80%. However, multiplying UAS1(DAS1) did not affect the yield of methanol-free expression by constitutive KpTrm1p. Another important region to enhance the effect of KpTrm1p under a methanol-free condition was identified in the DAS1 promoter, and was termed ESP(DAS1). Nevertheless, methanol-free phytase production using an engineered DAS1 promoter outperformed phytase production with the GAP promoter by 25%. Difference in regulation by known transcription factors on the AOX1 promoter and the DAS1 promoter was also illustrated.
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spelling pubmed-67362872019-09-16 Engineering the expression system for Komagataella phaffii (Pichia pastoris): an attempt to develop a methanol-free expression system Takagi, Shinobu Tsutsumi, Noriko Terui, Yuji Kong, XiangYu Yurimoto, Hiroya Sakai, Yasuyoshi FEMS Yeast Res Research Article The construction of a methanol-free expression system of Komagataella phaffii (Pichia pastoris) was attempted by engineering a strong methanol-inducible DAS1 promoter using Citrobacter braakii phytase production as a model case. Constitutive expression of KpTRM1, formerly PRM1—a positive transcription regulator for methanol-utilization (MUT) genes of K. phaffii,was demonstrated to produce phytase without addition of methanol, especially when a DAS1 promoter was used but not an AOX1 promoter. Another positive regulator, Mxr1p, did not have the same effect on the DAS1 promoter, while it was more effective than KpTrmp1 on the AOX1 promoter. Removing a potential upstream repression sequence (URS) and multiplying UAS1(DAS1) in the DAS1 promoter significantly enhanced the yield of C. braakii phytase with methanol-feeding, which surpassed the native AOX1 promoter by 80%. However, multiplying UAS1(DAS1) did not affect the yield of methanol-free expression by constitutive KpTrm1p. Another important region to enhance the effect of KpTrm1p under a methanol-free condition was identified in the DAS1 promoter, and was termed ESP(DAS1). Nevertheless, methanol-free phytase production using an engineered DAS1 promoter outperformed phytase production with the GAP promoter by 25%. Difference in regulation by known transcription factors on the AOX1 promoter and the DAS1 promoter was also illustrated. Oxford University Press 2019-08-13 /pmc/articles/PMC6736287/ /pubmed/31408151 http://dx.doi.org/10.1093/femsyr/foz059 Text en © The Author(s) 2019. Published by Oxford University Press on behalf of FEMS. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Takagi, Shinobu
Tsutsumi, Noriko
Terui, Yuji
Kong, XiangYu
Yurimoto, Hiroya
Sakai, Yasuyoshi
Engineering the expression system for Komagataella phaffii (Pichia pastoris): an attempt to develop a methanol-free expression system
title Engineering the expression system for Komagataella phaffii (Pichia pastoris): an attempt to develop a methanol-free expression system
title_full Engineering the expression system for Komagataella phaffii (Pichia pastoris): an attempt to develop a methanol-free expression system
title_fullStr Engineering the expression system for Komagataella phaffii (Pichia pastoris): an attempt to develop a methanol-free expression system
title_full_unstemmed Engineering the expression system for Komagataella phaffii (Pichia pastoris): an attempt to develop a methanol-free expression system
title_short Engineering the expression system for Komagataella phaffii (Pichia pastoris): an attempt to develop a methanol-free expression system
title_sort engineering the expression system for komagataella phaffii (pichia pastoris): an attempt to develop a methanol-free expression system
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6736287/
https://www.ncbi.nlm.nih.gov/pubmed/31408151
http://dx.doi.org/10.1093/femsyr/foz059
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