Cargando…

Expression and Surface Display of an Acidic Cold-Active Chitosanase in Pichia pastoris Using Multi-Copy Expression and High-Density Cultivation

Chitosanase hydrolyzes β-(1,4)-linked glycosidic bonds are used in chitosan chains to release oligosaccharide mixtures. Here, we cloned and expressed a cold-adapted chitosanase (CDA, Genbank: MW094131) using multi-copy expression plasmids (CDA1/2/3/4) in Pichia pastoris. We identified elevated CDA e...

Descripción completa

Detalles Bibliográficos
Autores principales: Peng, Yanhong, Wang, Yaping, Liu, Xiaoyan, Zhou, Ronghua, Liao, Xianqing, Min, Yong, Ma, Lixin, Wang, Ying, Rao, Ben
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8839494/
https://www.ncbi.nlm.nih.gov/pubmed/35164064
http://dx.doi.org/10.3390/molecules27030800
_version_ 1784650383218442240
author Peng, Yanhong
Wang, Yaping
Liu, Xiaoyan
Zhou, Ronghua
Liao, Xianqing
Min, Yong
Ma, Lixin
Wang, Ying
Rao, Ben
author_facet Peng, Yanhong
Wang, Yaping
Liu, Xiaoyan
Zhou, Ronghua
Liao, Xianqing
Min, Yong
Ma, Lixin
Wang, Ying
Rao, Ben
author_sort Peng, Yanhong
collection PubMed
description Chitosanase hydrolyzes β-(1,4)-linked glycosidic bonds are used in chitosan chains to release oligosaccharide mixtures. Here, we cloned and expressed a cold-adapted chitosanase (CDA, Genbank: MW094131) using multi-copy expression plasmids (CDA1/2/3/4) in Pichia pastoris. We identified elevated CDA expression levels in multi-copy strains, with strain PCDA4 selected for high-density fermentation and enzyme-activity studies. The high-density fermentation approach generated a CDA yield of 20014.8 U/mL, with temperature and pH optimization experiments revealing the highest CDA activity at 20 °C and 5.0, respectively. CDA was stable at 10 °C and 20 °C. Thus, CDA could be used at low temperatures. CDA was then displayed on P. pastoris using multi-copy expression plasmids. Then, multi-copy strains were constructed and labelled as PCDA(1-3)-AGα1. Further studies showed that the expression of CDA(1-3)-AGα1 in multi-copy strains was increased, and that strain PCDA3-AGα1 was chosen for high-density fermentation and enzyme activity studies. By using a multi-copy expression and high-density fermentation approach, we observed CDA-AGα1 expression yields of 102415 U/g dry cell weight. These data showed that the displayed CDA exhibited improved thermostability and was more stable over wider temperature and pH ranges than free CDA. In addition, displayed CDA could be reused. Thus, the data showed that displaying enzymes on P. pastoris may have applications in industrial settings.
format Online
Article
Text
id pubmed-8839494
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-88394942022-02-13 Expression and Surface Display of an Acidic Cold-Active Chitosanase in Pichia pastoris Using Multi-Copy Expression and High-Density Cultivation Peng, Yanhong Wang, Yaping Liu, Xiaoyan Zhou, Ronghua Liao, Xianqing Min, Yong Ma, Lixin Wang, Ying Rao, Ben Molecules Article Chitosanase hydrolyzes β-(1,4)-linked glycosidic bonds are used in chitosan chains to release oligosaccharide mixtures. Here, we cloned and expressed a cold-adapted chitosanase (CDA, Genbank: MW094131) using multi-copy expression plasmids (CDA1/2/3/4) in Pichia pastoris. We identified elevated CDA expression levels in multi-copy strains, with strain PCDA4 selected for high-density fermentation and enzyme-activity studies. The high-density fermentation approach generated a CDA yield of 20014.8 U/mL, with temperature and pH optimization experiments revealing the highest CDA activity at 20 °C and 5.0, respectively. CDA was stable at 10 °C and 20 °C. Thus, CDA could be used at low temperatures. CDA was then displayed on P. pastoris using multi-copy expression plasmids. Then, multi-copy strains were constructed and labelled as PCDA(1-3)-AGα1. Further studies showed that the expression of CDA(1-3)-AGα1 in multi-copy strains was increased, and that strain PCDA3-AGα1 was chosen for high-density fermentation and enzyme activity studies. By using a multi-copy expression and high-density fermentation approach, we observed CDA-AGα1 expression yields of 102415 U/g dry cell weight. These data showed that the displayed CDA exhibited improved thermostability and was more stable over wider temperature and pH ranges than free CDA. In addition, displayed CDA could be reused. Thus, the data showed that displaying enzymes on P. pastoris may have applications in industrial settings. MDPI 2022-01-26 /pmc/articles/PMC8839494/ /pubmed/35164064 http://dx.doi.org/10.3390/molecules27030800 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Peng, Yanhong
Wang, Yaping
Liu, Xiaoyan
Zhou, Ronghua
Liao, Xianqing
Min, Yong
Ma, Lixin
Wang, Ying
Rao, Ben
Expression and Surface Display of an Acidic Cold-Active Chitosanase in Pichia pastoris Using Multi-Copy Expression and High-Density Cultivation
title Expression and Surface Display of an Acidic Cold-Active Chitosanase in Pichia pastoris Using Multi-Copy Expression and High-Density Cultivation
title_full Expression and Surface Display of an Acidic Cold-Active Chitosanase in Pichia pastoris Using Multi-Copy Expression and High-Density Cultivation
title_fullStr Expression and Surface Display of an Acidic Cold-Active Chitosanase in Pichia pastoris Using Multi-Copy Expression and High-Density Cultivation
title_full_unstemmed Expression and Surface Display of an Acidic Cold-Active Chitosanase in Pichia pastoris Using Multi-Copy Expression and High-Density Cultivation
title_short Expression and Surface Display of an Acidic Cold-Active Chitosanase in Pichia pastoris Using Multi-Copy Expression and High-Density Cultivation
title_sort expression and surface display of an acidic cold-active chitosanase in pichia pastoris using multi-copy expression and high-density cultivation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8839494/
https://www.ncbi.nlm.nih.gov/pubmed/35164064
http://dx.doi.org/10.3390/molecules27030800
work_keys_str_mv AT pengyanhong expressionandsurfacedisplayofanacidiccoldactivechitosanaseinpichiapastorisusingmulticopyexpressionandhighdensitycultivation
AT wangyaping expressionandsurfacedisplayofanacidiccoldactivechitosanaseinpichiapastorisusingmulticopyexpressionandhighdensitycultivation
AT liuxiaoyan expressionandsurfacedisplayofanacidiccoldactivechitosanaseinpichiapastorisusingmulticopyexpressionandhighdensitycultivation
AT zhouronghua expressionandsurfacedisplayofanacidiccoldactivechitosanaseinpichiapastorisusingmulticopyexpressionandhighdensitycultivation
AT liaoxianqing expressionandsurfacedisplayofanacidiccoldactivechitosanaseinpichiapastorisusingmulticopyexpressionandhighdensitycultivation
AT minyong expressionandsurfacedisplayofanacidiccoldactivechitosanaseinpichiapastorisusingmulticopyexpressionandhighdensitycultivation
AT malixin expressionandsurfacedisplayofanacidiccoldactivechitosanaseinpichiapastorisusingmulticopyexpressionandhighdensitycultivation
AT wangying expressionandsurfacedisplayofanacidiccoldactivechitosanaseinpichiapastorisusingmulticopyexpressionandhighdensitycultivation
AT raoben expressionandsurfacedisplayofanacidiccoldactivechitosanaseinpichiapastorisusingmulticopyexpressionandhighdensitycultivation