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Controlled and Oriented Immobilization of Protein by Site-Specific Incorporation of Unnatural Amino Acid

机译:通过非天然氨基酸的特定位点结合来控制和定向固定蛋白质

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摘要

Immobilization of proteins in a functionally active form and proper orientation is crucial for effective surface-based analysis of proteins. Here we present a general method for controlled and oriented immobilization of protein by site-specific incorporation of unnatural amino acid and click chemistry. The utility and potential of this method was demonstrated by applying it to the analysis of interaction between a pathogenic protein DrrA of Legionella pneumophila and its binding partner Rab1 of human Kinetic analysis of Rab1 binding onto the DrrA-immobilized surfaces using surface plasmon resonance revealed that immobilization of site-specifically biotinylated DrrA results in about 10-fold higher sensitivity in binding assay than the conventional immobilization of DrrA with random orientation. The present method is expected to find wide applications in the fields of the surface-based studies of protein-protein (or ligand) interactions, drug screening, biochip, and single molecule analysis.
机译:以功能活性形式和正确方向固定蛋白质对于有效的基于表面的蛋白质分析至关重要。在这里,我们介绍了通过非天然氨基酸和点击化学的位点特异性结合来控制和定向固定蛋白质的一般方法。该方法的实用性和潜力通过将其应用于嗜肺军团菌病原蛋白DrrA与人类结合伴侣Rab1之间的相互作用而得到证明,利用表面等离振子共振对Rab1结合至固定在DrrA上的表面进行动力学分析表明固定位点特异性生物素化的DrrA在结合测定中的灵敏度比常规固定有随机方向的DrrA高约10倍。预期本方法可在基于表面的蛋白质-蛋白质(或配体)相互作用,药物筛选,生物芯片和单分子分析的研究中找到广泛的应用。

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