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首页> 外文期刊>Scientia pharmaceutica >FT-IR Spectroscopy for the Identification of Binding Sites and Measurements of the Binding Interactions of Important Metal Ions with Bovine Serum Albumin
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FT-IR Spectroscopy for the Identification of Binding Sites and Measurements of the Binding Interactions of Important Metal Ions with Bovine Serum Albumin

机译:FT-IR光谱用于鉴定结合位点和重要金属离子与牛血清白蛋白的结合相互作用的测量

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Proteins play crucial roles in the transportation and distribution of therapeutic substances, including metal ions in living systems. Some metal ions can strongly associate, while others show low affinity towards proteins. Consequently, in the present work, the binding behaviors of Ca2+, Ba2+, Ag+, Ru3+, Cu2+ and Co2+ with bovine serum albumin (BSA) were screened. BSA and the metal ions were allowed to interact at physiological pH and their binding interactions were screened by using FT-IR spectroscopy. Spectra were collected by using hydrated films over a range of 4000–400 cm?1. The interaction was demonstrated by a significant reduction in the spectral intensities of the amide I (C=O stretching) and amide II bands (C–N stretching coupled to NH bending) of the protein after complexation with metal ions. The binding interaction was further revealed by spectral shifting of the amide I band from 1651 cm?1 (free BSA) to 1653, 1654, 1649, 1655, 1655, and 1654 cm?1 for BSA–Ca2+, BSA–Ba2+, BSA–Ag+, BSA–Ru3+, BSA–Cu2+ and BSA–Co2+ complexes, respectively. The shifting of the amide I band was due to the interactions of metal ions with the O and N atoms of the ligand protein. Estimation of the secondary protein structure showed alteration in the protein conformation, characterized by a marked decrease (12.9–40.3%) in the α-helix accompanied by increased β-sheet and β-turn after interaction with the metal ions. The interaction results of this study were comparable with those reported in our previous investigation of metal ion–BSA interactions using affinity capillary electrophoresis (ACE), which has proven the accuracy of the FT-IR technique in the measurement of interactions between proteins and metal ions.
机译:蛋白质在治疗物质(包括生命系统中的金属离子)的运输和分配中起着至关重要的作用。一些金属离子可以强烈缔合,而另一些对蛋白质的亲和力却很低。因此,在本工作中,筛选了Ca2 +,Ba2 +,Ag +,Ru3 +,Cu2 +和Co2 +与牛血清白蛋白(BSA)的结合行为。使BSA和金属离子在生理pH下相互作用,并通过FT-IR光谱法筛选它们的结合相互作用。使用水合膜收集4000-400 cm?1范围内的光谱。与金属离子络合后,蛋白质的酰胺I(C = O拉伸)和酰胺II谱带(C–N拉伸与NH弯曲耦合)的光谱强度显着降低,证明了相互作用。对于BSA–Ca2 +,BSA–Ba2 +,BSA–,酰胺I谱带从1651 cm?1(游离BSA)到1653、1654、1649、1655、1655和1654 cm?1的光谱移动进一步揭示了结合相互作用。 Ag +,BSA-Ru3 +,BSA-Cu2 +和BSA-Co2 +复合物。酰胺Ⅰ带的移动是由于金属离子与配体蛋白的O和N原子的相互作用。二级蛋白质结构的估计表明蛋白质构象发生了变化,其特征在于α-螺旋的显着降低(12.9–40.3%),伴随着与金属离子相互作用后β-sheet和β-turn的增加。这项研究的相互作用结果与我们先前使用亲和毛细管电泳(ACE)进行的金属离子-BSA相互作用研究中报道的结果相当,这已经证明了FT-IR技术在测量蛋白质与金属离子之间的相互作用方面的准确性。

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