Guckeisen Tobias, Hosseinpour Saman, Peukert Wolfgang
Institute of Particle Technology (LFG), Friedrich-Alexander-Universität-Erlangen-Nürnberg (FAU), Cauerstraße 4, 91058 Erlangen, Germany.
J Colloid Interface Sci. 2021 May 15;590:38-49. doi: 10.1016/j.jcis.2021.01.015. Epub 2021 Jan 9.
The secondary structure of proteins affects their functionality and performance in physiological environments or industrial applications. Change of the solution pH or the presence of protein denaturants are the main chemical means that can alter the secondary structure of proteins or lead to protein denaturation. Since proteins in the bulk solution and those residing at the solution/air interface experience different local environments, their response to chemical denaturation can be different.
We utilize circular dichroism and chiral/achiral sum frequency generation spectroscopy to study the secondary structure of selected proteins as a function of the solution pH or in the presence of 8 M urea in the bulk solution and at the solution/air interface, respectively.
The liquid/air interface can enhance or decrease protein conformation stability. The change in the secondary structure of the surface adsorbed proteins in alkaline solutions occurs at pH values lower than those denaturing the studied proteins in the bulk solution. In contrast, while 8 M urea completely denatures the studied proteins in the bulk solution, the liquid/air interface prevents the urea-induced denaturation of the surface adsorbed proteins by limiting the access of urea to the hydrophobic side chains of proteins protruding to air.
蛋白质的二级结构会影响其在生理环境或工业应用中的功能和性能。溶液pH值的变化或蛋白质变性剂的存在是能够改变蛋白质二级结构或导致蛋白质变性的主要化学手段。由于本体溶液中的蛋白质和位于溶液/空气界面处的蛋白质经历不同的局部环境,它们对化学变性的反应可能不同。
我们分别利用圆二色光谱和手性/非手性和频振动光谱研究选定蛋白质在溶液pH值变化时或在本体溶液以及溶液/空气界面存在8 M尿素情况下的二级结构。
液/气界面可增强或降低蛋白质构象稳定性。碱性溶液中表面吸附蛋白质二级结构的变化发生在比使本体溶液中所研究蛋白质变性的pH值更低的情况下。相反,虽然8 M尿素能使本体溶液中的所研究蛋白质完全变性,但液/气界面通过限制尿素接触伸向空气的蛋白质疏水侧链,防止了尿素诱导表面吸附蛋白质变性。