首页> 外文期刊>Applied Microbiology >Fusion of Self-Assembling Amphipathic Oligopeptides with Cyclodextrin Glycosyltransferase Improves 2-O-d-Glucopyranosyl-l-Ascorbic Acid Synthesis with Soluble Starch as the Glycosyl Donor
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Fusion of Self-Assembling Amphipathic Oligopeptides with Cyclodextrin Glycosyltransferase Improves 2-O-d-Glucopyranosyl-l-Ascorbic Acid Synthesis with Soluble Starch as the Glycosyl Donor

机译:自组装两亲寡肽与环糊精糖基转移酶的融合改善了2-O-d-葡糖基糖基-1-抗坏血酸的合成,其中可溶性淀粉作为糖基供体

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In this study, we fused six self-assembling amphipathic peptides (SAPs) with cyclodextrin glycosyltransferase (CGTase) from Paenibacillus macerans to catalyze 2- O -d-glucopyranosyl-l-ascorbic acid (AA-2G) production with cheap substrates, including maltose, maltodextrin, and soluble starch as glycosyl donors. The results showed that two fusion enzymes, SAP5-CGTase and SAP6-CGTase, increased AA-2G yields to 2.33- and 3.36-fold that of wild-type CGTase when soluble starch was used as a substrate. The cyclization activities of these enzymes decreased, while disproportionation activities increased. Enzymatic characterization of the two fusion enzymes was performed, and kinetics analysis of AA-2G synthesis confirmed the enhanced soluble starch specificity of SAP5-CGTase and SAP6-CGTase compared to that in the wild-type CGTase. As revealed by structure modeling of the fusion and wild-type CGTases, enhanced substrate-binding capacity may result from the increased number of hydrogen bonds present after fusion. This study demonstrates an effective protein fusion approach to improving the substrate specificity of CGTase for AA-2G synthesis. Fusion enzymes, especially SAP6-CGTase, are promising starting points for further development through protein engineering.
机译:在这项研究中,我们融合了六个自组装的两亲性肽(SAPs)与来自Macerans的环糊精糖基转移酶(CGTase),以廉价的底物(包括麦芽糖)催化2-O-d-吡喃葡萄糖基-1-抗坏血酸(AA-2G)的生产。 ,麦芽糖糊精和可溶性淀粉作为糖基供体。结果表明,当以可溶性淀粉为底物时,两种融合酶SAP5-CGTase和SAP6-CGTase可使AA-2G产量分别达到野生型CGTase的2.33和3.36倍。这些酶的环化活性下降,歧化活性增加。进行了两种融合酶的酶学表征,AA-2G合成的动力学分析证实了与野生型CGTase相比,SAP5-CGTase和SAP6-CGTase的可溶性淀粉特异性增强。如融合和野生型CGTase的结构建模所揭示的,增强的底物结合能力可能是由于融合后存在的氢键数量增加所致。这项研究证明了一种有效的蛋白质融合方法,可提高CGTase对AA-2G合成的底物特异性。融合酶,尤其是SAP6-CGTase,是通过蛋白质工程进行进一步开发的有希望的起点。

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