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Enhanced extracellular recombinant keratinase activity in Bacillus subtilis SCK6 through signal peptide optimization and site-directed mutagenesis

Keratinase has a great commercial value owing to its applications in the enzymatic dehairing of goatskins. In this study, we adopted a combined strategy to enhance the extracellular recombinant keratinase activity in Bacillus subtilis SCK6. First, nine signal peptides were screened to enhance the ex...

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Autores principales: Tian, Jiewei, Long, Xiufeng, Tian, Yongqiang, Shi, Bi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9073338/
https://www.ncbi.nlm.nih.gov/pubmed/35529123
http://dx.doi.org/10.1039/c9ra07866e
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author Tian, Jiewei
Long, Xiufeng
Tian, Yongqiang
Shi, Bi
author_facet Tian, Jiewei
Long, Xiufeng
Tian, Yongqiang
Shi, Bi
author_sort Tian, Jiewei
collection PubMed
description Keratinase has a great commercial value owing to its applications in the enzymatic dehairing of goatskins. In this study, we adopted a combined strategy to enhance the extracellular recombinant keratinase activity in Bacillus subtilis SCK6. First, nine signal peptides were screened to enhance the expression of extracellular keratinase. The recombinant strain with SP(LipA) exhibited the highest extracellular keratinase activity of 739.03 U per mL, which was two-fold higher activity of the wild type. Second, based on the multiple sequence alignment with the bacterial alkaline proteases, the mutant (M123L/V149I/A242N) was introduced into the keratinase. Comparing with the wild type of keratinase, the mutant M123L/V149I/A242N showed an increase in the extracellular keratinase activity, which was about 1.2-fold higher activity of the wild type. Finally, the keratinase expression vector with SP(LipA) and mutant M123L/V149I/A242N was constructed, and the extracellular keratinase activity reported at 830.91 U per mL was a 2.2-fold activity of the wild type. Then, the mutant keratinase was purified and characterized. The mutant exhibited properties similar to those of the wild type at an optimal temperature of 60 °C and pH 10.0. Conclusively, the extracellular expression of keratinase was enhanced via a combined strategy, and the mutant keratinase demonstrated properties similar to that of the wild type of keratinase.
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spelling pubmed-90733382022-05-06 Enhanced extracellular recombinant keratinase activity in Bacillus subtilis SCK6 through signal peptide optimization and site-directed mutagenesis Tian, Jiewei Long, Xiufeng Tian, Yongqiang Shi, Bi RSC Adv Chemistry Keratinase has a great commercial value owing to its applications in the enzymatic dehairing of goatskins. In this study, we adopted a combined strategy to enhance the extracellular recombinant keratinase activity in Bacillus subtilis SCK6. First, nine signal peptides were screened to enhance the expression of extracellular keratinase. The recombinant strain with SP(LipA) exhibited the highest extracellular keratinase activity of 739.03 U per mL, which was two-fold higher activity of the wild type. Second, based on the multiple sequence alignment with the bacterial alkaline proteases, the mutant (M123L/V149I/A242N) was introduced into the keratinase. Comparing with the wild type of keratinase, the mutant M123L/V149I/A242N showed an increase in the extracellular keratinase activity, which was about 1.2-fold higher activity of the wild type. Finally, the keratinase expression vector with SP(LipA) and mutant M123L/V149I/A242N was constructed, and the extracellular keratinase activity reported at 830.91 U per mL was a 2.2-fold activity of the wild type. Then, the mutant keratinase was purified and characterized. The mutant exhibited properties similar to those of the wild type at an optimal temperature of 60 °C and pH 10.0. Conclusively, the extracellular expression of keratinase was enhanced via a combined strategy, and the mutant keratinase demonstrated properties similar to that of the wild type of keratinase. The Royal Society of Chemistry 2019-10-17 /pmc/articles/PMC9073338/ /pubmed/35529123 http://dx.doi.org/10.1039/c9ra07866e Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Tian, Jiewei
Long, Xiufeng
Tian, Yongqiang
Shi, Bi
Enhanced extracellular recombinant keratinase activity in Bacillus subtilis SCK6 through signal peptide optimization and site-directed mutagenesis
title Enhanced extracellular recombinant keratinase activity in Bacillus subtilis SCK6 through signal peptide optimization and site-directed mutagenesis
title_full Enhanced extracellular recombinant keratinase activity in Bacillus subtilis SCK6 through signal peptide optimization and site-directed mutagenesis
title_fullStr Enhanced extracellular recombinant keratinase activity in Bacillus subtilis SCK6 through signal peptide optimization and site-directed mutagenesis
title_full_unstemmed Enhanced extracellular recombinant keratinase activity in Bacillus subtilis SCK6 through signal peptide optimization and site-directed mutagenesis
title_short Enhanced extracellular recombinant keratinase activity in Bacillus subtilis SCK6 through signal peptide optimization and site-directed mutagenesis
title_sort enhanced extracellular recombinant keratinase activity in bacillus subtilis sck6 through signal peptide optimization and site-directed mutagenesis
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9073338/
https://www.ncbi.nlm.nih.gov/pubmed/35529123
http://dx.doi.org/10.1039/c9ra07866e
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AT longxiufeng enhancedextracellularrecombinantkeratinaseactivityinbacillussubtilissck6throughsignalpeptideoptimizationandsitedirectedmutagenesis
AT tianyongqiang enhancedextracellularrecombinantkeratinaseactivityinbacillussubtilissck6throughsignalpeptideoptimizationandsitedirectedmutagenesis
AT shibi enhancedextracellularrecombinantkeratinaseactivityinbacillussubtilissck6throughsignalpeptideoptimizationandsitedirectedmutagenesis