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Membrane (and Soluble) Protein Stability and Binding Measurements in the Lipid Cubic Phase Using Label-Free Differential Scanning Fluorimetry

机译:使用无标记的差分扫描荧光测量荧光致荧光致脂质相的膜(和可溶性)蛋白质稳定性和结合测量

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Label-free differential scanning fluorimetry (DSF) is a relatively new method for evaluating the stability of proteins. It can be used as a screening tool for downstream applications such as crystallization. The method is attractive in that it requires miniscule quantities of proteins, it can be performed using intrinsic tryptophan and tyrosine fluorescence, and, with the right equipment, it is easy to perform. To date, the method has been used with proteins in liquid solutions and dispersions. It was of interest to determine if DSF could be used with membrane proteins in the lipid cubic phase (LCP), which increasingly is being used for crystallization in support of structure-function studies. The cubic phase is viscous. Furthermore, in coexistence with excess aqueous solution, as happens during crystallization trials, it can become turbid and scatter light. The concern was that these features may render the mesophase unsuitable for DSF analysis. However, using lysozyme and four integral membrane proteins we demonstrate that the method works with all tested proteins in solution and in the LCP. Of note is the observation that some of the test membrane proteins are more stable while others are less so in the mesophase. The method also works in ligand binding measurements. Thus, DSF should prove useful as an analytical tool for identifying host and additive lipids, detergents, precipitants and chemical probes that support the generation of quality crystals by the cubic phase method. Microscale thermophoresis was used to supplement the DSF study and was also shown to work with proteins in the mesophase. Measurements with lysozyme highlight the utility of the cubic mesophase as a model system in which to perform confinement studies.
机译:无标签差分扫描荧光测定法(DSF)是评估蛋白质稳定性的相对较新的方法。它可以用作用于下游应用的筛选工具,例如结晶。该方法具有吸引力,因为它需要微小的蛋白质,它可以使用本征的色氨酸和酪氨酸荧光进行,并且具有右侧设备,易于执行。迄今为止,该方法已与液体溶液和分散体中的蛋白质一起使用。确定DSF是否可以与脂质立方相(LCP)中的膜蛋白一起使用的感兴趣的感兴趣的是,越来越多地用于结晶以支持结构函数研究。立方相是粘性的。此外,在与过量的水溶液共存时,如结晶试验期间发生,它可以变得浑浊和散射光。关注的是,这些特征可能使中间体不适合DSF分析。然而,使用溶菌酶和四种整体膜蛋白,我们证明该方法与溶液中的所有测试蛋白质和LCP一起使用。注意是观察到一些测试膜蛋白更稳定,而其他试验膜在中间相均较小。该方法还适用于配体结合测量。因此,DSF应该被证明是用于鉴定宿主和添加剂脂质,洗涤剂,沉淀剂和化学探针的分析工具,其通过立方相法支持产生质量晶体的产生。微尺寸热孔术用于补充DSF研究,并显示在中间相的蛋白质中使用。溶菌酶的测量突出了立方中间相的效用作为进行监禁研究的模型系统。

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