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Solubilizing and Stabilizing Proteins in Anhydrous Ionic Liquids through Formation of Protein-Polymer Surfactant Nanoconstructs

机译:通过形成蛋白质-聚合物表面活性剂纳米结构来增溶和稳定无水离子液体中的蛋白质

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摘要

Nonaqueous biocatalysis is rapidly becoming a desirable tool for chemical and fuel synthesis in both the laboratory and industry. Similarly, ionic liquids are increasingly popular anhydrous reaction media for a number of industrial processes. Consequently, the use of enzymes in ionic liquids as efficient, environment-friendly, commercial biocatalysts is highly attractive. However, issues surrounding the poor solubility and low stability of enzymes in truly anhydrous media remain a significant challenge. Here, we demonstrate for the first time that engineering the surface of a protein to yield protein-polymer surfactant nanoconstructs allows for dissolution of dry protein into dry ionic liquids. Using myoglobin as a model protein, we show that this method can deliver protein molecules with near native structure into both hydrophilic and hydrophobic anhydrous ionic liquids. Remarkably, using temperature-dependent synchrotron radiation circular dichroism spectroscopy to measure half-denaturation temperatures, our results show that protein stability increases by 55 ℃ in the ionic liquid as compared to aqueous solution, pushing the solution thermal denaturation beyond the boiling point of water. Therefore, the work presented herein could provide a platform for the realization of biocatalysis at high temperatures or in anhydrous solvent systems.
机译:在实验室和工业中,非水生物催化正迅速成为化学和燃料合成的理想工具。同样,在许多工业过程中,离子液体已成为越来越普遍的无水反应介质。因此,在离子液体中使用酶作为高效,环境友好的商业化生物催化剂具有很高的吸引力。但是,围绕酶在真正的无水培养基中溶解性差和稳定性低的问题仍然是一个重大挑战。在这里,我们首次证明了对蛋白质的表面进行改造以产生蛋白质-聚合物表面活性剂纳米结构可以将干燥的蛋白质溶解到干燥的离子液体中。使用肌红蛋白作为模型蛋白,我们表明该方法可以将具有接近天然结构的蛋白分子递送到亲水性和疏水性无水离子液体中。值得注意的是,使用依赖温度的同步辐射圆二色谱法测量半变性温度,我们的结果表明,与水溶液相比,离子液体中的蛋白质稳定性提高了55℃,从而使溶液的热变性超过了水的沸点。因此,本文提出的工作可以为在高温或无水溶剂系统中实现生物催化提供平台。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2016年第13期|4494-4501|共8页
  • 作者单位

    Department of Chemical Engineering, Imperial College, London SW7 2AZ, United Kingdom;

    Department of Chemical Engineering, Imperial College, London SW7 2AZ, United Kingdom;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 03:08:46

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