Cargando…

High-Level Expression of a Thermally Stable Alginate Lyase Using Pichia pastoris, Characterization and Application in Producing Brown Alginate Oligosaccharide

An alginate lyase encoding gene sagl from Flavobacterium sp. H63 was codon optimized and recombinantly expressed at high level in P.pastoris through high cell-density fermentation. The highest yield of recombinant enzyme of sagl (rSAGL) in yeast culture supernatant reached 226.4 μg/mL (915.5 U/mL)....

Descripción completa

Detalles Bibliográficos
Autores principales: Li, Haifeng, Wang, Shuling, Zhang, Yunyi, Chen, Liehuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5983289/
https://www.ncbi.nlm.nih.gov/pubmed/29751659
http://dx.doi.org/10.3390/md16050158
_version_ 1783328402151833600
author Li, Haifeng
Wang, Shuling
Zhang, Yunyi
Chen, Liehuan
author_facet Li, Haifeng
Wang, Shuling
Zhang, Yunyi
Chen, Liehuan
author_sort Li, Haifeng
collection PubMed
description An alginate lyase encoding gene sagl from Flavobacterium sp. H63 was codon optimized and recombinantly expressed at high level in P.pastoris through high cell-density fermentation. The highest yield of recombinant enzyme of sagl (rSAGL) in yeast culture supernatant reached 226.4 μg/mL (915.5 U/mL). This was the highest yield record of recombinant expression of alginate lyase so far. The rSAGL was confirmed as a partially glycosylated protein through EndoH digestion. The optimal reaction temperature and pH of this enzyme were 45 °C and 7.5; 80 mM K(+) ions could improve the catalytic activity of the enzyme by 244% at most. rSAGL was a thermal stable enzyme with T50(15) of 57–58 °C and T50(30) of 53–54 °C. Its thermal stability was better than any known alginate lyase. In 100 mM phosphate buffer of pH 6.0, rSAGL could retain 98.8% of the initial activity after incubation at 50 °C for 2 h. Furthermore, it could retain 61.6% of the initial activity after 48 h. The specific activity of the purified rSAGL produced by P. pastoris attained 4044 U/mg protein, which was the second highest record of alginate lyase so far. When the crude enzyme of the rSAGL was directly used in transformation of sodium alginate with 40 g/L, 97.2% of the substrate was transformed to di, tri, tetra brown alginate oligosaccharide after 32 h of incubation at 50 °C, and the final concentration of reducing sugar in mixture reached 9.51 g/L. This is the first report of high-level expression of thermally stable alginate lyase using P. pastoris system.
format Online
Article
Text
id pubmed-5983289
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-59832892018-06-06 High-Level Expression of a Thermally Stable Alginate Lyase Using Pichia pastoris, Characterization and Application in Producing Brown Alginate Oligosaccharide Li, Haifeng Wang, Shuling Zhang, Yunyi Chen, Liehuan Mar Drugs Article An alginate lyase encoding gene sagl from Flavobacterium sp. H63 was codon optimized and recombinantly expressed at high level in P.pastoris through high cell-density fermentation. The highest yield of recombinant enzyme of sagl (rSAGL) in yeast culture supernatant reached 226.4 μg/mL (915.5 U/mL). This was the highest yield record of recombinant expression of alginate lyase so far. The rSAGL was confirmed as a partially glycosylated protein through EndoH digestion. The optimal reaction temperature and pH of this enzyme were 45 °C and 7.5; 80 mM K(+) ions could improve the catalytic activity of the enzyme by 244% at most. rSAGL was a thermal stable enzyme with T50(15) of 57–58 °C and T50(30) of 53–54 °C. Its thermal stability was better than any known alginate lyase. In 100 mM phosphate buffer of pH 6.0, rSAGL could retain 98.8% of the initial activity after incubation at 50 °C for 2 h. Furthermore, it could retain 61.6% of the initial activity after 48 h. The specific activity of the purified rSAGL produced by P. pastoris attained 4044 U/mg protein, which was the second highest record of alginate lyase so far. When the crude enzyme of the rSAGL was directly used in transformation of sodium alginate with 40 g/L, 97.2% of the substrate was transformed to di, tri, tetra brown alginate oligosaccharide after 32 h of incubation at 50 °C, and the final concentration of reducing sugar in mixture reached 9.51 g/L. This is the first report of high-level expression of thermally stable alginate lyase using P. pastoris system. MDPI 2018-05-11 /pmc/articles/PMC5983289/ /pubmed/29751659 http://dx.doi.org/10.3390/md16050158 Text en © 2018 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Li, Haifeng
Wang, Shuling
Zhang, Yunyi
Chen, Liehuan
High-Level Expression of a Thermally Stable Alginate Lyase Using Pichia pastoris, Characterization and Application in Producing Brown Alginate Oligosaccharide
title High-Level Expression of a Thermally Stable Alginate Lyase Using Pichia pastoris, Characterization and Application in Producing Brown Alginate Oligosaccharide
title_full High-Level Expression of a Thermally Stable Alginate Lyase Using Pichia pastoris, Characterization and Application in Producing Brown Alginate Oligosaccharide
title_fullStr High-Level Expression of a Thermally Stable Alginate Lyase Using Pichia pastoris, Characterization and Application in Producing Brown Alginate Oligosaccharide
title_full_unstemmed High-Level Expression of a Thermally Stable Alginate Lyase Using Pichia pastoris, Characterization and Application in Producing Brown Alginate Oligosaccharide
title_short High-Level Expression of a Thermally Stable Alginate Lyase Using Pichia pastoris, Characterization and Application in Producing Brown Alginate Oligosaccharide
title_sort high-level expression of a thermally stable alginate lyase using pichia pastoris, characterization and application in producing brown alginate oligosaccharide
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5983289/
https://www.ncbi.nlm.nih.gov/pubmed/29751659
http://dx.doi.org/10.3390/md16050158
work_keys_str_mv AT lihaifeng highlevelexpressionofathermallystablealginatelyaseusingpichiapastorischaracterizationandapplicationinproducingbrownalginateoligosaccharide
AT wangshuling highlevelexpressionofathermallystablealginatelyaseusingpichiapastorischaracterizationandapplicationinproducingbrownalginateoligosaccharide
AT zhangyunyi highlevelexpressionofathermallystablealginatelyaseusingpichiapastorischaracterizationandapplicationinproducingbrownalginateoligosaccharide
AT chenliehuan highlevelexpressionofathermallystablealginatelyaseusingpichiapastorischaracterizationandapplicationinproducingbrownalginateoligosaccharide