Department of Chemistry, Indian Institute of Technology Kanpur, Kanpur 208 016, UP, India.
Department of Chemistry, Indian Institute of Technology Kanpur, Kanpur 208 016, UP, India.
Int J Biol Macromol. 2023 Dec 31;253(Pt 5):127100. doi: 10.1016/j.ijbiomac.2023.127100. Epub 2023 Sep 29.
Deep eutectic solvents (DESs) are potential biocatalytic media due to their easy preparation, fine-tuneability, biocompatibility, and most importantly, due to their ability to keep protein stable and active. However, there are many unanswered questions and gaps in our knowledge about how proteins behave in these alternate media. Herein, we investigated solvation dynamics, conformational fluctuation dynamics, and stability of human serum albumin (HSA) in 0.5 Acetamide/0.3 Urea/0.2 Sorbitol (0.5Ac/0.3Ur/0.2Sor) DES of varying concentrations to understand the intricacy of protein behaviour in DES. Our result revealed a gradual decrease in the side-chain flexibility and thermal stability of HSA beyond 30 % DES. On the other hand, the associated water dynamics around domain-I of HSA decelerate only marginally with increasing DES content, although viscosity rises considerably. We propose that even though macroscopic solvent properties are altered, a protein feels only an aqueous type of environment in the presence of DES. This is probably the first experimental study to delineate the role of the associated water structure of the enzyme for maintaining its stability inside DES. Although considerable effort is necessary to generalize such claims, it might serve as the basis for understanding why proteins remain stable and active in DES.
深共晶溶剂(DESs)由于其易于制备、精细可调、生物相容性以及最重要的是能够保持蛋白质稳定和活性,因此是潜在的生物催化介质。然而,关于蛋白质在这些替代介质中的行为,我们还有许多未解决的问题和知识空白。在此,我们研究了人血清白蛋白(HSA)在不同浓度的 0.5 乙酰胺/0.3 尿素/0.2 山梨醇(0.5Ac/0.3Ur/0.2Sor)DES 中的溶剂化动力学、构象波动动力学和稳定性,以了解蛋白质在 DES 中行为的复杂性。我们的结果表明,HSA 的侧链柔韧性和热稳定性逐渐降低,超过 30%的 DES。另一方面,尽管粘度显著增加,但 HSA 域 I 周围结合水的动力学仅略有减慢。我们提出,即使宏观溶剂性质发生变化,但在 DES 存在的情况下,蛋白质仅感觉到水型环境。这可能是第一个实验研究来描绘酶结合水结构在维持其在 DES 中的稳定性方面的作用。尽管需要进行大量的努力来推广这些说法,但它可能为理解为什么蛋白质在 DES 中保持稳定和活性提供基础。