首页> 美国卫生研究院文献>Marine Drugs >Functional Expression and Characterization of the Recombinant N-Acetyl-Glucosamine/N-Acetyl-Galactosamine-Specific Marine Algal Lectin BPL3
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Functional Expression and Characterization of the Recombinant N-Acetyl-Glucosamine/N-Acetyl-Galactosamine-Specific Marine Algal Lectin BPL3

机译:重组N-乙酰-葡糖胺/ N-乙酰-半乳糖胺特异的海洋藻凝集素BPL3的功能表达和表征

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摘要

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.
机译:以其碳水化合物结合能力为特征的凝集素具有广泛的实际应用。但是,由于杂质,其工业用途受到限制。因此,必须对重组凝集素进行质量控制生产。在这项研究中,使用细菌表达系统BL21(DE3)成功生产了藻凝集素BPL3(Bryopsis plumosa lectin 3),并具有人工重复结构(二聚体构建体)。通过LC-MS / MS光谱法确认了重组二聚体BPL3(rD2BPL3)。具有重复结构(rD2BPL3)的构建体的表达效率大于单体形式(rD1BPL3)。表达的最佳条件是20°C下1 mM IPTG。重组凝集素在变性条件下纯化,并通过快速稀释法重新折叠。将重组BPL3溶解在含有2 M尿素的1x PBS中。 rD2BPL3使用人红细胞显示出强大的血凝活性。 rD2BPL3具有与天然蛋白质相似的糖特异性,即对N-乙酰基-葡糖胺(GlcNAc)和N-乙酰基-半乳糖胺(GalNAc)。聚糖阵列结果显示重组BPL3和天然BPL3表现出不同的结合特性。两者均显示出对α-Man-Sp的弱结合活性。天然BPL3对氨基糖的α构象显示出很强的结合特异性,而rD2BPL3对β构象具有结合活性。本研究开发的方法适用于质量控制的重组凝集素的大规模生产。

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