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A highly active heparinase I from Bacteroides cellulosilyticus: Cloning, high level expression, and molecular characterization

As one of the most extensively studied glycosaminoglycan lyases, heparinase I has been used in producing low or ultra-low molecular weight heparin. Its’ important applications are to neutralize the heparin in human blood and analyze heparin structure in the clinic. However, the low productivity and...

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Autores principales: Gao, Li-Wei, Zhu, Hong-Tao, Liu, Cai-Yun, Lv, Zhi-Xiang, Fan, Xiao-Man, Zhang, Ye-Wang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7575093/
https://www.ncbi.nlm.nih.gov/pubmed/33079966
http://dx.doi.org/10.1371/journal.pone.0240920
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author Gao, Li-Wei
Zhu, Hong-Tao
Liu, Cai-Yun
Lv, Zhi-Xiang
Fan, Xiao-Man
Zhang, Ye-Wang
author_facet Gao, Li-Wei
Zhu, Hong-Tao
Liu, Cai-Yun
Lv, Zhi-Xiang
Fan, Xiao-Man
Zhang, Ye-Wang
author_sort Gao, Li-Wei
collection PubMed
description As one of the most extensively studied glycosaminoglycan lyases, heparinase I has been used in producing low or ultra-low molecular weight heparin. Its’ important applications are to neutralize the heparin in human blood and analyze heparin structure in the clinic. However, the low productivity and activity of the enzyme have greatly hindered its applications. In this study, a novel Hep-I from Bacteroides cellulosilyticus (BcHep-I) was successfully cloned and heterologously expressed in E. coli BL21 (DE3) as a soluble protein. The molecular mass and isoelectric point (pI) of the enzyme are 44.42 kDa and 9.02, respectively. And the characterization of BcHep-I after purified with Ni-NTA affinity chromatography suggested that it is a mesophilic enzyme. BcHep-I can be activated by 1 mM Ca(2+), Mg(2+), and Mn(2+), while severely inhibited by Zn(2+), Co(2+), and EDTA. The specific activity of the enzyme was 738.3 U·mg(-1) which is the highest activity ever reported. The K(m) and V(max) were calculated as 0.17 mg·mL(-1) and 740.58 U·mg(-1), respectively. Besides, the half-life of 300 min at 30°C showed BcHep-I has practical applications. Homology modeling and substrate docking revealed that Gln15, Lys74, Arg76, Lys104, Arg149, Gln208, Tyr336, Tyr342, and Lys338 were mainly involved in the substrate binding of Hep-I, and 11 hydrogen bonds were formed between heparin and the enzyme. These results indicated that BcHep-I with high activity has great potential applications in the industrial production of heparin, especially in the clinic to neutralize heparin.
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spelling pubmed-75750932020-10-26 A highly active heparinase I from Bacteroides cellulosilyticus: Cloning, high level expression, and molecular characterization Gao, Li-Wei Zhu, Hong-Tao Liu, Cai-Yun Lv, Zhi-Xiang Fan, Xiao-Man Zhang, Ye-Wang PLoS One Research Article As one of the most extensively studied glycosaminoglycan lyases, heparinase I has been used in producing low or ultra-low molecular weight heparin. Its’ important applications are to neutralize the heparin in human blood and analyze heparin structure in the clinic. However, the low productivity and activity of the enzyme have greatly hindered its applications. In this study, a novel Hep-I from Bacteroides cellulosilyticus (BcHep-I) was successfully cloned and heterologously expressed in E. coli BL21 (DE3) as a soluble protein. The molecular mass and isoelectric point (pI) of the enzyme are 44.42 kDa and 9.02, respectively. And the characterization of BcHep-I after purified with Ni-NTA affinity chromatography suggested that it is a mesophilic enzyme. BcHep-I can be activated by 1 mM Ca(2+), Mg(2+), and Mn(2+), while severely inhibited by Zn(2+), Co(2+), and EDTA. The specific activity of the enzyme was 738.3 U·mg(-1) which is the highest activity ever reported. The K(m) and V(max) were calculated as 0.17 mg·mL(-1) and 740.58 U·mg(-1), respectively. Besides, the half-life of 300 min at 30°C showed BcHep-I has practical applications. Homology modeling and substrate docking revealed that Gln15, Lys74, Arg76, Lys104, Arg149, Gln208, Tyr336, Tyr342, and Lys338 were mainly involved in the substrate binding of Hep-I, and 11 hydrogen bonds were formed between heparin and the enzyme. These results indicated that BcHep-I with high activity has great potential applications in the industrial production of heparin, especially in the clinic to neutralize heparin. Public Library of Science 2020-10-20 /pmc/articles/PMC7575093/ /pubmed/33079966 http://dx.doi.org/10.1371/journal.pone.0240920 Text en © 2020 Gao et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Gao, Li-Wei
Zhu, Hong-Tao
Liu, Cai-Yun
Lv, Zhi-Xiang
Fan, Xiao-Man
Zhang, Ye-Wang
A highly active heparinase I from Bacteroides cellulosilyticus: Cloning, high level expression, and molecular characterization
title A highly active heparinase I from Bacteroides cellulosilyticus: Cloning, high level expression, and molecular characterization
title_full A highly active heparinase I from Bacteroides cellulosilyticus: Cloning, high level expression, and molecular characterization
title_fullStr A highly active heparinase I from Bacteroides cellulosilyticus: Cloning, high level expression, and molecular characterization
title_full_unstemmed A highly active heparinase I from Bacteroides cellulosilyticus: Cloning, high level expression, and molecular characterization
title_short A highly active heparinase I from Bacteroides cellulosilyticus: Cloning, high level expression, and molecular characterization
title_sort highly active heparinase i from bacteroides cellulosilyticus: cloning, high level expression, and molecular characterization
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7575093/
https://www.ncbi.nlm.nih.gov/pubmed/33079966
http://dx.doi.org/10.1371/journal.pone.0240920
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