104705 Institute of Cell Biophysics of Russian Academy of Sciences, Moscow, Russia.
Appl Spectrosc. 2018 Feb;72(2):257-267. doi: 10.1177/0003702817735551. Epub 2017 Oct 24.
Terahertz time-domain spectroscopy (THz-TDS) was used to determine the spectra (range = 1.2-120 cm) of aqueous solutions of bovine serum albumin (BSA) at pH range 2.5-10. Under each of the selected pH, BSA molecules exist in a different conformation, compared to other pH values. The spectra were used to calculate the functions of the dielectric permittivity of BSA solutions. Dielectric functions of the aqueous phase of BSA solutions were calculated based on the Bruggeman model, without the contribution of BSA itself. Fitting of the dielectric functions was performed using a model which includes three water spectral bands: two relaxation bands with relaxation times of about 8.28 and 0.3 ps and a vibrational band with a maximum of about 180 cm. The parameters of these bands were determined through fitting and physical interpretation at the molecular level can be provided for each of them. A comparison between the values of model parameters of solutions with BSA and without BSA allowed to conclude that the main effect of BSA is the formation of strongly bound hydration shells in the immediate proximity to the protein molecule. At the same time, the structure of more distant layers of the hydration shells is destroyed, with an increased formation of free water molecules. Some differences are observed in the effect of different BSA conformations on the aqueous phase of solution. The proposed approach can be generalized and applied for studying of a wide class of biological macromolecules in aqueous solutions.
太赫兹时域光谱(THz-TDS)用于确定牛血清白蛋白(BSA)水溶液的光谱(范围= 1.2-120cm),pH 值范围为 2.5-10。在每个选定的 pH 值下,BSA 分子与其他 pH 值下相比,都存在不同的构象。使用这些光谱来计算 BSA 溶液的介电常数函数。BSA 溶液水相的介电函数是根据 Bruggeman 模型计算的,不考虑 BSA 本身的贡献。介电函数的拟合是使用包括三个水光谱带的模型进行的:两个弛豫带,弛豫时间约为 8.28 和 0.3 ps,以及一个振动带,最大值约为 180cm。通过拟合确定这些带的参数,并可以在分子水平上为每个参数提供物理解释。将含有 BSA 和不含 BSA 的溶液的模型参数值进行比较,可以得出结论,BSA 的主要作用是在蛋白质分子附近形成强结合的水合壳。同时,水合壳的更远层的结构被破坏,形成更多的自由水分子。在不同 BSA 构象对溶液水相的影响方面观察到一些差异。所提出的方法可以推广并应用于研究水溶液中广泛的生物大分子。