Functional Expression and Characterization of the Recombinant N-Acetyl-Glucosamine/N-Acetyl-Galactosamine-Specific Marine Algal Lectin BPL3

Lectins, characterized by their carbohydrate-binding ability, have extensive practical applications. However, their industrial use is limited due to impurity. Thus, quality-controlled production of recombinant lectin is necessary. In this study, the algal lectin BPL3 (Bryopsis plumosa lectin 3) was...

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Published in:Marine Drugs
Main Authors: Hyun-Ju Hwang, Jin-Woo Han, Gwang Hoon Kim, Jong Won Han
Format: Article
Language:English
Published: MDPI AG 2018-01-01
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Online Access:http://www.mdpi.com/1660-3397/16/1/13
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author Hyun-Ju Hwang
Jin-Woo Han
Gwang Hoon Kim
Jong Won Han
author_facet Hyun-Ju Hwang
Jin-Woo Han
Gwang Hoon Kim
Jong Won Han
author_sort Hyun-Ju Hwang
collection DOAJ
container_title Marine Drugs
description Lectins, characterized by their carbohydrate-binding ability, have extensive practical applications. However, their industrial use is limited due to impurity. Thus, quality-controlled production of recombinant lectin is necessary. In this study, the algal lectin BPL3 (Bryopsis plumosa lectin 3) was successfully produced using a bacterial expression system, BL21(DE3), with an artificial repeated structure (dimeric construct). Recombinant dimeric BPL3 (rD2BPL3) was confirmed by LC-MS/MS spectrometry. Expression efficiency was greater for the construct with the repeat structure (rD2BPL3) than the monomeric form (rD1BPL3). Optimal conditions for expression were 1 mM IPTG at 20 °C. Recombinant lectin was purified under denaturing conditions and refolded by the flash dilution method. Recombinant BPL3 was solubilized in 1× PBS containing 2 M urea. rD2BPL3 showed strong hemagglutination activity using human erythrocyte. rD2BPL3 had a similar sugar specificity to that of the native protein, i.e., to N-acetyl-glucosamine (GlcNAc) and N-acetyl-galactosamine (GalNAc). Glycan array results showed that recombinant BPL3 and native BPL3 exhibited different binding properties. Both showed weak binding activity to α-Man-Sp. Native BPL3 showed strong binding specificity to the alpha conformation of amino sugars, and rD2BPL3 had binding activity to the beta conformation. The process developed in this study was suitable for the quality-controlled large-scale production of recombinant lectins.
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spelling doaj-art-ef223e0a641a477cbd86cb0e2d2b35642025-08-19T21:52:12ZengMDPI AGMarine Drugs1660-33972018-01-011611310.3390/md16010013md16010013Functional Expression and Characterization of the Recombinant N-Acetyl-Glucosamine/N-Acetyl-Galactosamine-Specific Marine Algal Lectin BPL3Hyun-Ju Hwang0Jin-Woo Han1Gwang Hoon Kim2Jong Won Han3Department of Genetic Resources Research, National Marine Biodiversity Institute of Korea, Seocheon 33662, KoreaDepartment of Genetic Resources Research, National Marine Biodiversity Institute of Korea, Seocheon 33662, KoreaDepartment of Biology, Kongju National University, Kongju 32588, KoreaDepartment of Genetic Resources Research, National Marine Biodiversity Institute of Korea, Seocheon 33662, KoreaLectins, characterized by their carbohydrate-binding ability, have extensive practical applications. However, their industrial use is limited due to impurity. Thus, quality-controlled production of recombinant lectin is necessary. In this study, the algal lectin BPL3 (Bryopsis plumosa lectin 3) was successfully produced using a bacterial expression system, BL21(DE3), with an artificial repeated structure (dimeric construct). Recombinant dimeric BPL3 (rD2BPL3) was confirmed by LC-MS/MS spectrometry. Expression efficiency was greater for the construct with the repeat structure (rD2BPL3) than the monomeric form (rD1BPL3). Optimal conditions for expression were 1 mM IPTG at 20 °C. Recombinant lectin was purified under denaturing conditions and refolded by the flash dilution method. Recombinant BPL3 was solubilized in 1× PBS containing 2 M urea. rD2BPL3 showed strong hemagglutination activity using human erythrocyte. rD2BPL3 had a similar sugar specificity to that of the native protein, i.e., to N-acetyl-glucosamine (GlcNAc) and N-acetyl-galactosamine (GalNAc). Glycan array results showed that recombinant BPL3 and native BPL3 exhibited different binding properties. Both showed weak binding activity to α-Man-Sp. Native BPL3 showed strong binding specificity to the alpha conformation of amino sugars, and rD2BPL3 had binding activity to the beta conformation. The process developed in this study was suitable for the quality-controlled large-scale production of recombinant lectins.http://www.mdpi.com/1660-3397/16/1/13Bryopsis plumosaBPL3lectinhemagglutininrecombinanttandem repeatGlcNAcGalNAc
spellingShingle Hyun-Ju Hwang
Jin-Woo Han
Gwang Hoon Kim
Jong Won Han
Functional Expression and Characterization of the Recombinant N-Acetyl-Glucosamine/N-Acetyl-Galactosamine-Specific Marine Algal Lectin BPL3
Bryopsis plumosa
BPL3
lectin
hemagglutinin
recombinant
tandem repeat
GlcNAc
GalNAc
title Functional Expression and Characterization of the Recombinant N-Acetyl-Glucosamine/N-Acetyl-Galactosamine-Specific Marine Algal Lectin BPL3
title_full Functional Expression and Characterization of the Recombinant N-Acetyl-Glucosamine/N-Acetyl-Galactosamine-Specific Marine Algal Lectin BPL3
title_fullStr Functional Expression and Characterization of the Recombinant N-Acetyl-Glucosamine/N-Acetyl-Galactosamine-Specific Marine Algal Lectin BPL3
title_full_unstemmed Functional Expression and Characterization of the Recombinant N-Acetyl-Glucosamine/N-Acetyl-Galactosamine-Specific Marine Algal Lectin BPL3
title_short Functional Expression and Characterization of the Recombinant N-Acetyl-Glucosamine/N-Acetyl-Galactosamine-Specific Marine Algal Lectin BPL3
title_sort functional expression and characterization of the recombinant n acetyl glucosamine n acetyl galactosamine specific marine algal lectin bpl3
topic Bryopsis plumosa
BPL3
lectin
hemagglutinin
recombinant
tandem repeat
GlcNAc
GalNAc
url http://www.mdpi.com/1660-3397/16/1/13
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