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Applying bimolecular fluorescence complementation to screen and purify aquaporin protein:protein complexes

机译:应用双分子荧光互补技术筛选和纯化水通道蛋白蛋白:蛋白复合物

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摘要

Protein:protein interactions play key functional roles in the molecular machinery of the cell. A major challenge for structural biology is to gain high‐resolution structural insight into how membrane protein function is regulated by protein:protein interactions. To this end we present a method to express, detect, and purify stable membrane protein complexes that are suitable for further structural characterization. Our approach utilizes bimolecular fluorescence complementation (BiFC), whereby each protein of an interaction pair is fused to nonfluorescent fragments of yellow fluorescent protein (YFP) that combine and mature as the complex is formed. YFP thus facilitates the visualization of protein:protein interactions in vivo, stabilizes the assembled complex, and provides a fluorescent marker during purification. This technique is validated by observing the formation of stable homotetramers of human aquaporin 0 (AQP0). The method's broader applicability is demonstrated by visualizing the interactions of AQP0 and human aquaporin 1 (AQP1) with the cytoplasmic regulatory protein calmodulin (CaM). The dependence of the AQP0‐CaM complex on the AQP0 C‐terminus is also demonstrated since the C‐terminal truncated construct provides a negative control. This screening approach may therefore facilitate the production and purification of membrane protein:protein complexes for later structural studies by X‐ray crystallography or single particle electron microscopy.
机译:蛋白质:蛋白质相互作用在细胞的分子机制中起关键功能作用。结构生物学的主要挑战是获得高分辨率的结构见解,以了解膜蛋白功能如何通过蛋白质:蛋白质相互作用来调节。为此,我们提出了一种表达,检测和纯化适合进一步结构表征的稳定膜蛋白复合物的方法。我们的方法利用双分子荧光互补(BiFC),从而将相互作用对中的每个蛋白与黄色荧光蛋白(YFP)的非荧光片段融合,并随着复合物的形成而成熟。因此,YFP促进了体内蛋白质:蛋白质相互作用的可视化,稳定了组装的复合物,并在纯化过程中提供了荧光标记。该技术通过观察人水通道蛋白0(AQP0)稳定的同四聚体的形成而得到验证。通过可视化AQP0和人水通道蛋白1(AQP1)与细胞质调节蛋白钙调蛋白(CaM)的相互作用,证明了该方法的广泛适用性。还证明了AQP0-CaM复合物对AQP0 C末端的依赖性,因为C末端截短的构建体提供了阴性对照。因此,这种筛选方法可能有助于膜蛋白:蛋白复合物的产生和纯化,以用于以后通过X射线晶体学或单粒子电子显微镜进行的结构研究。

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