首页> 外文期刊>Analytical Biochemistry: An International Journal of Analytical and Preparative Methods >In situ protein microarrays capable of real-time kinetics analysis based on surface plasmon resonance imaging
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In situ protein microarrays capable of real-time kinetics analysis based on surface plasmon resonance imaging

机译:可基于表面等离振子共振成像进行实时动力学分析的原位蛋白质微阵列

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摘要

In recent years, in situ protein synthesis microarray technologies have enabled protein microarrays to be created on demand just before they are needed. In this paper, we utilized the TUS-TER immobilization technology to allow label-free detection with real-time kinetics of protein-protein interactions using surface plasmon resonance imaging (SPRi). We constructed an expression-ready plasmid DNA with a C-terminal TUS fusion tag to directionally immobilize the in situ synthesized recombinant proteins onto the surface of the biosensor. The expression plasmid was immobilized on the polyethylene imine-modified gold surface, which was then coupled with a cell-free expression system on the flow cell of the SPRi instrument. The expressed TUS fusion proteins bind on the surface via the immobilized TER DNA sequence with high affinity (similar to 3-7 x 10(-13) M). The expression and immobilization of the recombinant in situ expressed proteins were confirmed by probing with specific antibodies. The present study shows a new low cost method for in situ protein expression microarrays that has the potential to study the kinetics of protein-protein interactions. These protein microarrays can be created on demand without the problems of stability associated with protein arrays used in the drug discovery and biomarker discovery fields. (C) 2014 Elsevier Inc. All rights reserved.
机译:近年来,原位蛋白质合成微阵列技术使蛋白质微阵列能够在需要之前按需创建。在本文中,我们利用TUS-TER固定技术通过表面等离振子共振成像(SPRi)进行蛋白质-蛋白质相互作用实时动力学的无标记检测。我们构建了具有C端TUS融合标签的表达就绪质粒DNA,可将原位合成的重组蛋白定向固定在生物传感器的表面上。将表达质粒固定在聚乙烯亚胺修饰的金表面上,然后将其与SPRi仪器流通池上的无细胞表达系统偶联。表达的TUS融合蛋白通过固定的TER DNA序列以高亲和力(类似于3-7 x 10(-13)M)结合在表面上。通过用特异性抗体探测,证实了重组原位表达蛋白的表达和固定化。本研究显示了一种用于原位蛋白表达微阵列的新型低成本方法,该方法具有研究蛋白-蛋白相互作用动力学的潜力。可以按需创建这些蛋白质微阵列,而不会出现与药物发现和生物标记物发现领域中使用的蛋白质阵列相关的稳定性问题。 (C)2014 Elsevier Inc.保留所有权利。

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