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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Strategic planning of proteins in ionic liquids: future solvents for the enhanced stability of proteins against multiple stresses
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Strategic planning of proteins in ionic liquids: future solvents for the enhanced stability of proteins against multiple stresses

机译:离子液体中蛋白质的战略规划:未来溶剂,用于蛋白质稳定性对多重应力的影响

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Ionic liquids (ILs) present a vast number of solvents capable of replacing toxic organic solvents in chemical, biotechnology and biomedical applications. ILs are inexpensive and environmentally friendly as the materials can be recycled conveniently. Chemists use a variety of cation and anion combinations to produce an IL that fits the requirements of the sustainable future through the pursuit of greener chemical processes. As such, the development of various types of ILs has been recognized as the emergence of environmentally friendly solvents to attain enhanced protein stability in vitro. The literature survey reveals that there exist a large number of scholarly articles as well as elegant reviews on protein stability in ILs. Biomolecules have adapted to antagonistic environmental stresses that normally denature proteins, and the mechanism of adaptation that protects the cellular components against denaturation involves the intracellular concentration of co-solvents. In this regard, recent experimental results distinctly demonstrated that ILs are stabilizing proteins against denaturing stresses, and their presence in the cells does not alter protein functional activities. However, a review focusing particularly on the refolding and counteracting effects of the ILs against denatured proteins by multiple stresses is still missing. This perspective unveils the studies that have been conducted to improve protein stabilities with ILs as well as the refolding and counteracting abilities of these ILs against the denatured proteins under the influence of multiple stresses. We believe that ILs can provide significant environmental and economic advantages for biochemical processes in the near future. Essentially, numerous investigations are required to allow us to further explore the stabilizing properties of ILs over proteins.
机译:离子液体(ILS)呈现了大量溶剂,能够在化学,生物技术和生物医学应用中取代有毒有机溶剂。 ILS廉价且环境友好,因为材料可以方便地回收。化学家使用各种阳离子和阴离子组合来生产IL,通过追求更环保的化学过程来实现可持续未来的要求。因此,各种类型的ILS的发展已被认为是环保溶剂在体外获得增强的蛋白质稳定性的出现。文献调查显示,有大量的学术文章以及ILS中蛋白质稳定性的优雅评论。生物分子适于拮抗环境应力,即通常变性蛋白质的拮抗环境应力,以及保护细胞组分免受变性的适应机理涉及共溶剂的细胞内浓度。在这方面,最近的实验结果明显证明ILS稳定蛋白质免受变性应力,并且它们在细胞中的存在不会改变蛋白质功能性活性。然而,综述特别是通过多次应力对ILS对抗变性蛋白质的重折叠和抵消效应的综述仍然缺失。这种观点揭示了已经进行的研究,以改善ILS的蛋白质稳定性以及在多种应力的影响下对这些ILS对抗变性蛋白质的重新折叠和抵抗能力。我们认为,ILS可以在不久的将来为生化过程提供重大的环境和经济优势。本质上,许多调查需要允许我们进一步探索ILS在蛋白质上的稳定性。

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