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Purification and Immobilization of the Recombinant Brassica oleracea Chlorophyllase 1 (BoCLH1) on DIAION(®)CR11 as Potential Biocatalyst for the Production of Chlorophyllide and Phytol
Recombinant Brassica oleracea chlorophyllase 1 (BoCLH1) with a protein molecular weight of 38.63 kDa was successfully expressed in E. coli and could catalyze chlorophyll (Chl) hydrolysis to chlorophyllide and phytol in vitro. In this study, we used DIAION(®)CR11, a highly porous cross-linked polysty...
Autores principales: | , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
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MDPI
2015
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6272265/ https://www.ncbi.nlm.nih.gov/pubmed/25719743 http://dx.doi.org/10.3390/molecules20033744 |
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author | Chou, Yi-Li Ko, Chia-Yun Chen, Long-Fang O. Yen, Chih-Chung Shaw, Jei-Fu |
author_facet | Chou, Yi-Li Ko, Chia-Yun Chen, Long-Fang O. Yen, Chih-Chung Shaw, Jei-Fu |
author_sort | Chou, Yi-Li |
collection | PubMed |
description | Recombinant Brassica oleracea chlorophyllase 1 (BoCLH1) with a protein molecular weight of 38.63 kDa was successfully expressed in E. coli and could catalyze chlorophyll (Chl) hydrolysis to chlorophyllide and phytol in vitro. In this study, we used DIAION(®)CR11, a highly porous cross-linked polystyrene divinylbenzene-based metal chelator, for purifying and immobilizing the poly (His)-tagged enzyme. The Cu(II) showed the highest protein adsorption (9.2 ± 0.43 mg/g gel) and enzyme activity (46.3 ± 3.14 U/g gel) for the immobilization of the poly (His)-tagged recombinant BoCLH1 compared with other metal chelators. Biochemical analysis of the immobilized enzyme showed higher chlorophyllase activity for Chl a hydrolysis in a weak base environment (pH 8.0), and activity above 70% was in a high-temperature environment, compared with the free enzyme. In addition, compared with free BoCLH1, the enzyme half-life (t(1/2)) of the immobilized BoCLH1 increased from 25.42 to 54.35 min (approximately two-fold) at 60 °C. The immobilized enzyme retained a residual activity of approximately 60% after 17 cycles in a repeated-batch operation. Therefore, DIAION(®)CR11Cu(II)-immobilized recombinant BoCLH1 can be repeatedly used to lower the cost and is potentially useful for the industrial production of chlorophyllide and phytol. |
format | Online Article Text |
id | pubmed-6272265 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2015 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-62722652018-12-31 Purification and Immobilization of the Recombinant Brassica oleracea Chlorophyllase 1 (BoCLH1) on DIAION(®)CR11 as Potential Biocatalyst for the Production of Chlorophyllide and Phytol Chou, Yi-Li Ko, Chia-Yun Chen, Long-Fang O. Yen, Chih-Chung Shaw, Jei-Fu Molecules Article Recombinant Brassica oleracea chlorophyllase 1 (BoCLH1) with a protein molecular weight of 38.63 kDa was successfully expressed in E. coli and could catalyze chlorophyll (Chl) hydrolysis to chlorophyllide and phytol in vitro. In this study, we used DIAION(®)CR11, a highly porous cross-linked polystyrene divinylbenzene-based metal chelator, for purifying and immobilizing the poly (His)-tagged enzyme. The Cu(II) showed the highest protein adsorption (9.2 ± 0.43 mg/g gel) and enzyme activity (46.3 ± 3.14 U/g gel) for the immobilization of the poly (His)-tagged recombinant BoCLH1 compared with other metal chelators. Biochemical analysis of the immobilized enzyme showed higher chlorophyllase activity for Chl a hydrolysis in a weak base environment (pH 8.0), and activity above 70% was in a high-temperature environment, compared with the free enzyme. In addition, compared with free BoCLH1, the enzyme half-life (t(1/2)) of the immobilized BoCLH1 increased from 25.42 to 54.35 min (approximately two-fold) at 60 °C. The immobilized enzyme retained a residual activity of approximately 60% after 17 cycles in a repeated-batch operation. Therefore, DIAION(®)CR11Cu(II)-immobilized recombinant BoCLH1 can be repeatedly used to lower the cost and is potentially useful for the industrial production of chlorophyllide and phytol. MDPI 2015-02-24 /pmc/articles/PMC6272265/ /pubmed/25719743 http://dx.doi.org/10.3390/molecules20033744 Text en © 2015 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 license (http://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Article Chou, Yi-Li Ko, Chia-Yun Chen, Long-Fang O. Yen, Chih-Chung Shaw, Jei-Fu Purification and Immobilization of the Recombinant Brassica oleracea Chlorophyllase 1 (BoCLH1) on DIAION(®)CR11 as Potential Biocatalyst for the Production of Chlorophyllide and Phytol |
title | Purification and Immobilization of the Recombinant Brassica oleracea Chlorophyllase 1 (BoCLH1) on DIAION(®)CR11 as Potential Biocatalyst for the Production of Chlorophyllide and Phytol |
title_full | Purification and Immobilization of the Recombinant Brassica oleracea Chlorophyllase 1 (BoCLH1) on DIAION(®)CR11 as Potential Biocatalyst for the Production of Chlorophyllide and Phytol |
title_fullStr | Purification and Immobilization of the Recombinant Brassica oleracea Chlorophyllase 1 (BoCLH1) on DIAION(®)CR11 as Potential Biocatalyst for the Production of Chlorophyllide and Phytol |
title_full_unstemmed | Purification and Immobilization of the Recombinant Brassica oleracea Chlorophyllase 1 (BoCLH1) on DIAION(®)CR11 as Potential Biocatalyst for the Production of Chlorophyllide and Phytol |
title_short | Purification and Immobilization of the Recombinant Brassica oleracea Chlorophyllase 1 (BoCLH1) on DIAION(®)CR11 as Potential Biocatalyst for the Production of Chlorophyllide and Phytol |
title_sort | purification and immobilization of the recombinant brassica oleracea chlorophyllase 1 (boclh1) on diaion(®)cr11 as potential biocatalyst for the production of chlorophyllide and phytol |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6272265/ https://www.ncbi.nlm.nih.gov/pubmed/25719743 http://dx.doi.org/10.3390/molecules20033744 |
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