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Volatile Kinetic Capillary Electrophoresis for Studies of Protein-Small Molecule Interactions

机译:挥发性动力学毛细管电泳,用于蛋白质-小分子相互作用的研究

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Kinetic capillary electrophoresis (KCE) is a toolset of homogeneous affinity methods for studying kinetics of noncovalent binding. Sensitive KCE measurements are typically done with fluorescence detection and require a fluorescent label on a smaller-sized binding partner. KCE with fluorescence detection is difficult to use for study of protein-small molecule interactions since labeling small molecules is cumbersome and can affect binding. A combination of KCE with mass-spectrometry (KCE-MS) has been recently suggested for label-free studies of protein-small molecule interactions. The major obstacle for studies by KCE-MS is a buffer mismatch between KCE and MS; MS requires volatile buffers while KCE of protein-ligand interactions is always run in near-physiological buffers. Here we asked a simple question: can protein-ligand interactions be studied with KCE in a volatile buffer? We compared three volatile buffers (ammonium acetate, ammonium bicarbonate, and ammonium formate) with a near-physiological buffer (Tris-acetate) for three protein-ligand pairs. The volatile buffers were found not to significantly affect protein-ligand complex stability; moreover, when used as CE run buffers, they facilitated good-quality separation of free ligands from the protein-ligand complexes. The use of volatile buffers instead of Tris-acetate in detection of small molecules by MS improved the detection limit by approximately 2 orders of magnitude. These findings prove the principle of "volatile" KCE, which can be easily coupled with MS to facilitate label-free kinetic studies of protein-small molecule interactions.
机译:动力学毛细管电泳(KCE)是研究非共价结合动力学的均相亲和力方法的工具集。敏感的KCE测量通常通过荧光检测完成,并且需要在较小尺寸的结合伴侣上进行荧光标记。带有荧光检测的KCE很难用于蛋白质-小分子相互作用的研究,因为标记小分子很麻烦并且会影响结合。最近有人建议将KCE与质谱法(KCE-MS)结合用于蛋白质-小分子相互作用的无标记研究。 KCE-MS研究的主要障碍是KCE和MS之间的缓冲区不匹配。 MS需要挥发性缓冲液,而蛋白质-配体相互作用的KCE始终在接近生理的缓冲液中运行。在这里,我们问了一个简单的问题:可以在挥发性缓冲液中用KCE研究蛋白质-配体的相互作用吗?我们比较了三种蛋白质-配体对的三种挥发性缓冲液(乙酸铵,碳酸氢铵和甲酸铵)和近生理缓冲液(Tris-乙酸盐)。发现挥发性缓冲液不会显着影响蛋白质-配体复合物的稳定性。此外,当用作CE运行缓冲液时,它们有助于从蛋白质-配体复合物中高质量分离游离配体。在质谱检测小分子中使用挥发性缓冲液代替Tris-acetate可将检测限提高约2个数量级。这些发现证明了“挥发性” KCE的原理,可以很容易地与MS偶联,以促进蛋白质-小分子相互作用的无标记动力学研究。

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