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Dual-Functional-Tag-Facilitated Protein Labeling and Immobilization

机译:双功能标签促进的蛋白质标记和固定化

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An important strategy in the construction of biomimetic membranes and devices is to use natural proteins as the functional components for incorporation in a polymeric or nanocomposite matrix. Toward this goal, an important step is to immobilize proteins with high efficiency and precision without disrupting the protein function. Here, we developed a dual-functional tag containing histidine and the non-natural amino acid azidohomoalanine (AHA). AHA is metabolically incorporated into the protein, taking advantage of the Met-tRNA and Met-tRNA synthetase. Histidine in the tag can facilitate metal-affinity purification, whereas AHA can react with an alkyne-functionalized probe or surface via well-established click chemistry. We tested the performance of the tag using two model proteins, green fluorescence protein and an enzyme pyrophosphatase. We found that the addition of the tag and the incorporation of AHA did not significantly impair the properties of these proteins, and the histidine–AHA tag can facilitate protein purification, immobilization, and labeling.
机译:构建仿生膜和装置的重要策略是使用天然蛋白作为用于掺入聚合物或纳米复合材料基质的功能组分。对此目标来说,一个重要的步骤是以高效率和精度固定蛋白质,而不会破坏蛋白质功能。在这里,我们开发了一种含有组氨酸和非天然氨基酸α唑啉氨酸(AHA)的双官能标记。 AHA代谢地掺入蛋白质中,利用Met-TRNA和Met-TRNA合成酶。标签中的组氨酸可以促进金属亲和力纯化,而AHA可以通过良好建立的咔哒化学与炔烃官能化探针或表面反应。我们使用两种模型蛋白质,绿色荧光蛋白和酶焦磷酸酶测试标签的性能。我们发现,添加标签和AHA的掺入并没有显着损害这些蛋白质的性质,并且组氨酸-AHA标签可以促进蛋白质纯化,固定化和标记。

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