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使用 RNA 适体功能化量子点进行 Western blot 分析的替代方法。

An alternative to Western blot analysis using RNA aptamer-functionalized quantum dots.

机构信息

Department of Chemistry and Research Institute for Basic Sciences, Kyung Hee University, 1 Hoegi-dong, Dongdaemun-gu, Seoul 130-701, South Korea.

出版信息

Bioorg Med Chem Lett. 2010 Jun 1;20(11):3322-5. doi: 10.1016/j.bmcl.2010.04.040. Epub 2010 Apr 14.

Abstract

To make full use both of optical properties of quantum dots (QDs) and of specific interactions between aptamers and their ligands of interest, we employed QD-conjugated RNA aptamer interactions with histidine tag. QDs offer revolutionary fluorescence performance due to their long-term photostability, brilliant colors, fixability, and narrow, symmetrical emission spectra, and aptamers are known to specifically bind to their target molecules, including metal ions, small molecules, and macromolecules. In this study, we have synthesized RNA aptamer-functionalized QDs, and demonstrated their application to specific protein detection, as an alternative to the conventional Western blot analysis. We observed that our RNA aptamer-functionalized QD system dramatically reduced the time and effort required for conventional Western blot analysis, whereas the selectivity was comparable to that of the conventionally available anti-histidine tag antibody and the sensitivity was comparable to that of the Coomassie blue staining method. In principle, owing to the remarkable optical properties of QDs and a wide versatility of aptamers for selection, our system can harness the high brightness, stability and reusability to quantitatively detect aptamer-recognizable proteins. Furthermore, multiplex detection for several proteins on a single blot can be achieved by our new method, which thus may be able to facilitate and simplify the routinely used protein detection procedure, and make a variety of proteomics analysis possible.

摘要

为了充分利用量子点(QDs)的光学特性和适体与其靶标配体之间的特异性相互作用,我们采用了与组氨酸标签结合的 QD 缀合 RNA 适体相互作用。由于其长期的光稳定性、鲜艳的颜色、可固定性和狭窄、对称的发射光谱,QDs 提供了革命性的荧光性能,而适体则已知能够特异性地结合其靶分子,包括金属离子、小分子和大分子。在这项研究中,我们合成了 RNA 适体功能化的 QDs,并证明了它们在特定蛋白质检测中的应用,可作为传统 Western blot 分析的替代方法。我们观察到,我们的 RNA 适体功能化 QD 系统大大减少了传统 Western blot 分析所需的时间和精力,而选择性与传统的抗组氨酸标签抗体相当,灵敏度与考马斯亮蓝染色法相当。原则上,由于 QDs 的显著光学特性和适体在选择方面的广泛通用性,我们的系统可以利用高亮度、稳定性和可重复使用性来定量检测适体可识别的蛋白质。此外,我们的新方法可以在单个印迹上对几种蛋白质进行多重检测,因此可能有助于简化和简化常规使用的蛋白质检测程序,并使各种蛋白质组学分析成为可能。

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