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Impact of ionic liquids on conformational changes of bovine serum albumin - a fourier transform infrared spectroscopic study

机译:离子液体对牛血清白蛋白构象变化的影响-傅立叶变换红外光谱研究

摘要

Ionic liquids (ILs) are low melting salts composed of an organic cation and an inorganic or organic anion. Ionic liquids are of interest for their wide range of applications and unique properties, such as the negligible vapor pressure of some types of ionic liquids, and the ability to modify ionic liquid properties by selection of the cation or anion. It has been hypothesized that over one million binary ionic liquids (meaning a single cation/anion pair) are possible. Due to the vast number of potential combinations, it should be possible to design ionic liquids specifically for an application of interest. Ionic liquids not only provide a novel and highly competent reaction medium, that is the solvent, but they also serve as efficient participants in a variety of chemical and biological reaction processes. However, there is a little understanding on how ionic liquids affect proteins. Here, we investigated the impact of different ionic liquids as a function of their alkyl chain length of the cationic moiety and concentrations on the conformational changes of the Bovine Serum Albumin (BSA) protein. In this work, we focused on the alternation in the secondary structures of the model protein. Fourier Transform Infrared (FTIR) spectroscopy is used to examine the changes in the secondary structure of BSA on varying concentration of a particular ionic liquid from 0 M to 1.0 M. It is observed that on increasing the concentrations of particular ionic liquid, structured regions are transformed to unstructured regions and thereby, assisting protein unfolding. Similarly, a gradual disruption of the native structure of BSA is observed with increase in the alkyl chain length of ionic liquids.
机译:离子液体(ILs)是由有机阳离子和无机或有机阴离子组成的低熔点盐。离子液体因其广泛的应用范围和独特的性能而受到关注,例如某些类型的离子液体的蒸气压可忽略不计,以及通过选择阳离子或阴离子来改变离子液体性能的能力。据推测,可能有超过一百万种二元离子液体(意味着一个阳离子/阴离子对)。由于大量潜在的组合,应该有可能设计出专门用于感兴趣的应用的离子液体。离子液体不仅提供了一种新颖而高效的反应介质(即溶剂),而且还在各种化学和生物反应过程中充当了有效的参与者。但是,对离子液体如何影响蛋白质的了解很少。在这里,我们调查了不同的离子液体作为其阳离子部分烷基链长度和浓度对牛血清白蛋白(BSA)蛋白质构象变化的影响。在这项工作中,我们集中于模型蛋白的二级结构的交替。傅立叶变换红外(FTIR)光谱用于检查从0 M到1.0 M的特定离子液体浓度变化时BSA二级结构的变化。观察到,随着特定离子液体浓度的增加,结构化区域逐渐变大。转化为非结构化区域,从而帮助蛋白质解折叠。类似地,随着离子液体烷基链长度的增加,观察到BSA天然结构的逐渐破坏。

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    Chakraborty Gurudas;

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  • 年度 2014
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