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Site-Directed Alkylation Detected by In-Gel Fluorescence (SDAF) to Determine the Topology Map and Probe the Solvent Accessibility of Membrane Proteins

机译:通过凝胶内荧光(SDAF)检测到的定点烷基化可确​​定拓扑图并探查膜蛋白的溶剂可及性

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摘要

The topology of helix-bundle membrane proteins provides low-resolution structural information with regard to the number and orientation of membrane-spanning helices, as well as the sidedness of intra/extra-cellular domains. In the past decades, several strategies have been developed to experimentally determine the topology of membrane proteins. However, generally, these methods are labour-intensive, time-consuming and difficult to implement for quantitative analysis. Here, we report a novel approach, site-directed alkylation detected by in-gel fluorescence (SDAF), which monitors the fluorescent band shift caused by alkylation of the EGFP-fused target membrane protein bearing one single introduced cysteine. In-gel fluorescence provides a unique readout of target membrane proteins with EGFP fusion from non-purified samples, revealing a distinct 5 kDa shift on SDS-PAGE gel due to conjugation with mPEG-MAL-5K. Using the structurally characterised bile acid transporter ASBTNM as an example, we demonstrate that SDAF generates a topology map consistent with the crystal structure. The efficiency of mPEG-MAL-5K modification at each introduced cysteine can easily be quantified and analysed, providing a useful tool for probing the solvent accessibility at a specific position of the target membrane protein.
机译:螺旋束膜蛋白的拓扑结构提供了有关跨膜螺旋的数量和方向以及细胞内/细胞外结构域的侧面的低分辨率结构信息。在过去的几十年中,已经开发了几种策略来实验确定膜蛋白的拓扑结构。然而,通常,这些方法是劳动密集型的,费时的并且难以用于定量分析。在这里,我们报告了一种新方法,即通过凝胶内荧光(SDAF)检测到的定点烷基化,该方法可监测由带有一个单独引入的半胱氨酸的EGFP融合靶膜蛋白的烷基化引起的荧光带位移。凝胶内荧光提供了从未纯化样品中进行EGFP融合的靶膜蛋白的独特读数,揭示了与mPEG-MAL-5K结合后SDS-PAGE凝胶上5kkDa的明显变化。以具有结构特征的胆汁酸转运蛋白ASBTNM为例,我们证明SDAF生成与晶体结构一致的拓扑图。可以很容易地量化和分析每个引入的半胱氨酸上mPEG-MAL-5K修饰的效率,为探测目标膜蛋白特定位置的溶剂可及性提供了有用的工具。

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