微阵列作为模型生物传感器平台研究适体的结构和亲和力

IF 1.3 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY
Jennifer A. Martin, Y. Chushak, J. Chávez, J. Hagen, N. Kelley-Loughnane
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引用次数: 11

摘要

将游离于溶液中的核酸适体识别元件固定在生物传感器平台表面已被证明是具有挑战性的。本研究研究了固定在商用微阵列上的多个适体/靶对的结合,作为模拟生物传感器应用的模型系统。结果表明,距离表面的最小距离(连接体长度)和胸腺嘧啶核碱基连接体在不同条件下提供可复制的结合。与直接标记cy3蛋白相比,间接标记方法(用生物素标记靶标,然后短暂孵育cy3 -链亲和素)提供了更高的信噪比和两个数量级以上的检测限提高。我们还表明,适体/靶相互作用的亲和力可以在直接和间接标记之间发生变化,并且优化最高荧光强度的条件会增加检测的灵敏度,但不会改变总体亲和力。此外,一些最初不结合的序列在条件优化后显示出了结合。这些结果,结合非选择缓冲液中增强结合的研究,提供了对生物传感器应用至关重要的适体的结构和亲和力的见解,并为希望在微阵列表面上研究适体的研究人员提供了起始条件的概括。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Microarrays as Model Biosensor Platforms to Investigate the Structure and Affinity of Aptamers
Immobilization of nucleic acid aptamer recognition elements selected free in solution onto the surface of biosensor platforms has proven challenging. This study investigated the binding of multiple aptamer/target pairs immobilized on a commercially available microarray as a model system mimicking biosensor applications. The results indicate a minimum distance (linker length) from the surface and thymine nucleobase linker provides reproducible binding across varying conditions. An indirect labeling method, where the target was labeled with a biotin followed by a brief Cy3-streptavidin incubation, provided a higher signal-to-noise ratio and over two orders of magnitude improvement in limit of detection, compared to direct Cy3-protein labeling. We also showed that the affinities of the aptamer/target interaction can change between direct and indirect labeling and conditions to optimize for the highest fluorescence intensity will increase the sensitivity of the assay but will not change the overall affinity. Additionally, some sequences which did not initially bind demonstrated binding when conditions were optimized. These results, in combination with studies demonstrating enhanced binding in nonselection buffers, provided insights into the structure and affinity of aptamers critical for biosensor applications and allowed for generalizations in starting conditions for researchers wishing to investigate aptamers on a microarray surface.
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来源期刊
Journal of Nucleic Acids
Journal of Nucleic Acids BIOCHEMISTRY & MOLECULAR BIOLOGY-
CiteScore
3.10
自引率
21.70%
发文量
5
审稿时长
12 weeks
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