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基于荧光检测圆二色性的蛋白质局部结构分析灵敏方法。

A sensitive method based on fluorescence-detected circular dichroism for protein local structure analysis.

机构信息

Graduate School of Integrated Arts and Sciences, Hiroshima University, Higashi-Hiroshima 739-8521, Japan.

出版信息

Anal Biochem. 2012 Nov 15;430(2):179-84. doi: 10.1016/j.ab.2012.08.020. Epub 2012 Aug 28.

Abstract

We report an improved fluorescence-detected circular dichroism (FDCD)-based analytical method that is useful for probing protein three-dimensional structures. The method uses a novel FDCD device with an ellipsoidal mirror that functions on a standard circular dichroism (CD) spectrometer and eliminates all artifacts. Our experiments demonstrated three important findings. First, the method is applicable to any proteins either by using intrinsic fluorescence derived from tryptophan residues or by introducing a fluorescent label onto nonfluorescent proteins. Second, by using intrinsic fluorescence, FDCD spectroscopy can detect a structural change in the tertiary structure of metmyoglobin due to stepwise denaturation on a change in pH. Such changes could not be detected by conventional CD spectroscopy. Third, based on the typical advantages of fluorescence-based analyses, FDCD measurements enable observation of only the target proteins in a solution even in the presence of other peptides. Using our ellipsoidal mirror FDCD device, we could observe structural changes of fluorescently labeled calmodulin on binding with Ca(2+) and/or interacting with binding peptides. Because FDCD appears to reflect the protein's local structure around the fluorophore, it may provide a useful means for "pinpoint analysis" of protein structures.

摘要

我们报告了一种改进的荧光检测圆二色性(FDCD)分析方法,该方法可用于探测蛋白质的三维结构。该方法使用了一种新颖的 FDCD 设备,该设备带有一个椭球面镜,可在标准圆二色性(CD)光谱仪上运行,并消除所有伪影。我们的实验证明了三个重要发现。首先,该方法适用于任何蛋白质,既可以使用来自色氨酸残基的固有荧光,也可以在非荧光蛋白质上引入荧光标记。其次,通过使用固有荧光,FDCD 光谱学可以检测由于 pH 变化导致的逐步变性而引起的肌红蛋白三级结构的结构变化。这种变化不能通过常规 CD 光谱学检测到。第三,基于荧光分析的典型优势,FDCD 测量即使在存在其他肽的情况下,也只能观察溶液中的目标蛋白质。使用我们的椭球面镜 FDCD 设备,我们可以观察到荧光标记的钙调蛋白与 Ca(2+)结合和/或与结合肽相互作用时的结构变化。因为 FDCD 似乎反映了荧光团周围蛋白质的局部结构,所以它可能为蛋白质结构的“精确定位分析”提供了一种有用的手段。

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