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探究牛血红蛋白在气-液界面的吸附过程及其对界面水分子结构的影响。

Probing the Bovine Hemoglobin Adsorption Process and its Influence on Interfacial Water Structure at the Air-Water Interface.

机构信息

Department of Physics, Indian Institute of Technology Ropar, Rupnagar, India.

Department of Applied Sciences, Punjab Engineering College (Deemed to be University), Chandigarh, India.

出版信息

Appl Spectrosc. 2021 Dec;75(12):1497-1509. doi: 10.1177/00037028211035157. Epub 2021 Aug 4.

DOI:10.1177/00037028211035157
PMID:34346774
Abstract

*These authors contributed equally to this work.The molecular-level insight of protein adsorption and its kinetics at interfaces is crucial because of its multifold role in diverse fundamental biological processes and applications. In the present study, the sum frequency generation (SFG) vibrational spectroscopy has been employed to demonstrate the adsorption process of bovine hemoglobin (BHb) protein molecules at the air-water interface at interfacial isoelectric point of the protein. It has been observed that surface coverage of BHb molecules significantly influences the arrangement of the protein molecules at the interface. The time-dependent SFG studies at two different frequencies in the fingerprint region elucidate the kinetics of protein denaturation process and its influence on the hydrogen-bonding network of interfacial water molecules at the air-water interface. The initial growth kinetics suggests the synchronized behavior of protein adsorption process with the structural changes in the interfacial water molecules. Interestingly, both the events carry similar characteristic time constants. However, the conformational changes in the protein structure due to the denaturation process stay for a long time, whereas the changes in water structure reconcile quickly. It is revealed that the protein denaturation process is followed by the advent of strongly hydrogen-bonded water molecules at the interface. In addition, we have also carried out the surface tension kinetics measurements to complement the findings of our SFG spectroscopic results.

摘要

这些作者对此项工作贡献相同。由于蛋白质吸附及其在界面处的动力学在多种基本生物过程和应用中具有多重作用,因此对其在分子水平上的了解至关重要。在本研究中,采用和频产生(SFG)振动光谱来证明在蛋白质的等电点处蛋白质分子在气-水界面上的吸附过程。已经观察到,蛋白质分子的表面覆盖率显著影响蛋白质分子在界面上的排列。在指纹区域的两个不同频率的时间依赖性 SFG 研究阐明了蛋白质变性过程的动力学及其对气-水界面上水分子氢键网络的影响。初始生长动力学表明蛋白质吸附过程与界面水分子结构变化具有同步行为。有趣的是,这两个事件具有相似的特征时间常数。然而,由于蛋白质变性过程导致的蛋白质结构的构象变化持续时间较长,而水结构的变化则很快得到协调。结果表明,蛋白质变性过程之后,界面上出现了具有强氢键的水分子。此外,我们还进行了表面张力动力学测量,以补充我们的 SFG 光谱结果的发现。

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