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Thermal unfolding and refolding of lysozyme in deep eutectic solvents and their aqueous dilutions

机译:在低共熔溶剂及其水溶液稀释液中溶菌酶的热解折叠

摘要

The stability of hen's egg white lysozyme in different choline chloride-based pseudo-concentrated and neat deep eutectic solvents (DESs) has been studied by means of intrinsic fluorescence and CD spectroscopy. Thermal unfolding experiments carried out in non-diluted urea:choline chloride and glycerol:choline chloride eutectic solvents (UCCl-DES and GCCl-DES, respectively) showed the accumulation at certain temperatures of discrete, partially folded intermediates that displayed a high content of secondary structure and a disrupted tertiary structure. Reversibility of the unfolding process was incomplete in these circumstances, with the urea-based DES showing higher protein structure destabilization upon thermal treatment. On the other hand, aqueous dilution of the eutectic mixtures allowed the recovery of a reversible, two-state denaturation process. Lysozyme activity was also affected in neat and pseudo-concentrated GCCl-DES, with an increasing recovery of activity upon aqueous dilution, and full restoration after DES removal through extensive dialysis. These results suggest that protein interactions at room temperature are reversible and depend on the DES components and on the aqueous content of the original DES dilution. © 2013 the Owner Societies.
机译:通过本征荧光和CD光谱研究了鸡蛋蛋白溶菌酶在不同的氯化胆碱类伪浓缩和纯深共晶溶剂(DESs)中的稳定性。在未稀释的尿素:氯化胆碱和甘油:氯化胆碱共晶溶剂(分别为UCCl-DES和GCCl-DES)中进行的热解折叠实验表明,离散的,部分折叠的中间体在一定温度下会积聚,显示出较高的次要含量结构和受破坏的三级结构。在这些情况下,展开过程的可逆性是不完全的,其中基于尿素的DES在热处理后显示出更高的蛋白质结构失稳性。另一方面,共晶混合物的水稀释允许恢复可逆的两个状态的变性过程。在纯净和假浓缩的GCCl-DES中,溶菌酶的活性也受到影响,在水稀释时活性恢复增加,并且在通过大量透析去除DES后完全恢复。这些结果表明,室温下的蛋白质相互作用是可逆的,并且取决于DES组分和原始DES稀释液的含水量。 ©2013业主协会。

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