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A novel variant of Thermotoga neapolitana beta-glucosidase B is an efficient catalyst for the synthesis of alkyl glucosides by transglycosylation

机译:Thermotoga Neapolitanaβ-葡糖苷酶B的新型变体是通过胰膜化合成烷基葡糖苷的有效催化剂

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摘要

Alkyl glycosides are surfactants with good biodegradability and low toxicity, attractive to produce by an enzymatic method to get a well-defined product. In this paper, we report a novel thermostable variant of a family 3 beta-glucosidase to be an efficient catalyst in alkyl-glucoside forming reactions using transglycosylation with hexanol or octanol as the acceptor molecule. The enzyme has an apparent optimum for hydrolysis at 90 degrees C, which coincides with its unfolding temperature. The total activity is lower at lower temperature (60 degrees C), but the ratio of alcoholysis/hydrolysis is slightly more favourable. This ratio is however more heavily influenced by the water content and the pH. Optimal reaction conditions for hexyl glucoside synthesis from p-nitrophenyl-beta-glucopyranoside were a water/hexanol two-phase system containing 16% (v/v) water, pH 5.8, and a temperature of 60 degrees C. Under these conditions, the total initial reaction rate was 153mumolmin(-1)mg(-1) and the alcoholysis/hydrolysis ratio was 5.1. Comparing with alcoholysis/hydrolysis ratios of other beta-glycosidases, TnBgl3B can be considered to be a very promising catalyst for alkyl glucoside production.
机译:烷基糖苷是具有良好生物降解性和低毒性的表面活性剂,具有通过酶法产生的吸引力,得到明确的产品。在本文中,我们将家庭3β-葡糖苷酶的新型热稳定变体报告为使用六醇或辛醇作为受体分子的烷基 - 葡糖苷形成反应的有效催化剂。酶在90℃下的水解方面具有明显的最佳选择,其与其展开温度一致。在较低温度(60℃)下,总活性较低,但醇解/水解的比例略有良好。然而,该比例受到水含量和pH的影响更大。对硝基苯基 - β-吡喃葡萄糖苷的己基葡糖苷合成的最佳反应条件是含有16%(v / v)水,pH5.8和60℃的温度的水/己醇两相体系。在这些条件下,总初始反应速率为153mumolmin(-1)mg(-1),醇解/水解比为5.1。与其他β-糖苷酶的醇解/水解比相比,TNBG13B可被认为是烷基葡糖苷产生的非常有前途的催化剂。

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  • 来源
    《Journal of Biotechnology》 |2007年第1期|共8页
  • 作者单位

    Department of Biotechnology Center for Chemistry and Chemical Engineering Lund University P.O. Box 124 SE-221 00 Lund Sweden.;

    Department of Molecular Information Processing Institute of Molecular Biotechnology (IMB) Beutenbergstr.11 D-07745 Jena Germany;

    Department of Molecular Information Processing Institute of Molecular Biotechnology (IMB) Beutenbergstr.11 D-07745 Jena Germany;

    Department of Molecular Information Processing Institute of Molecular Biotechnology (IMB) Beutenbergstr.11 D-07745 Jena Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物工程学(生物技术);
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