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Exploring the structure and stability of amino acids and glycine peptides in biocompatible ionic liquids

机译:探讨生物相容性离子液体中氨基酸和甘氨酸肽的结构和稳定性

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摘要

Amino acids (AAs) are vital components for a variety of biological systems and can be linked through covalent bonds (or peptide bonds) to form a protein structure. Essentially, the interactions of these AAs with solvents as well as co-solvents/solutes determine the thermodynamic stability of the protein. In this context, this review represents an overview of the current status of the thermodynamic effect of ionic liquids (ILs) on AAs and glycine peptides (GPs). Moreover, ILs are considered as green solvents for many chemical and biological processes due to their tunable physical properties. Interestingly, these ILs can adjust themselves in any required experimental conditions such as protein extraction to enzyme catalysis. In this review, we attempt to assess the status of our current understanding on the biocompatible nature of the ions of ILs on AAs and protein model compounds and their functional groups with some precisely available experimental data in the literature. Examples of current applications of the ILs on protein model compounds are also covered in this review.
机译:氨基酸(AAS)是各种生物系统的重要组分,并且可以通过共价键(或肽键)连接以形成蛋白质结构。基本上,这些AA与溶剂的相互作用以及共溶剂/溶质确定了蛋白质的热力学稳定性。在这种情况下,该综述代表了离子液体(ILS)对AAS和甘氨酸肽(GPS)的热力学作用的当前状态的概述。此外,由于其可调谐物理性质,ILS被认为是许多化学和生物学过程的绿色溶剂。有趣的是,这些ILS可以在任何所需的实验条件下调整自己,例如蛋白质提取到酶催化。在本综述中,我们试图评估我们目前了解AAS和蛋白模型化合物的离子的生物相容性性质及其官能团,以及文献中的一些精确可用的实验数据。本综述还涉及​​ILS对蛋白质模型化合物的目前应用的实例。

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