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病毒特异性适体的选择与多功能应用。

Selection and versatile application of virus-specific aptamers.

机构信息

Department of Medical Chemistry, Molecular Biology and Pathobiochemistry, Semmelweis University, Budapest, Hungary.

出版信息

FASEB J. 2010 Nov;24(11):4187-95. doi: 10.1096/fj.09-144246. Epub 2010 Jul 12.

Abstract

Although the significance of molecular diagnostics in routine plant virus detection is rapidly growing, the preferred methods are still antibody-based enzyme immunoassays. In the past decade, aptamers have been demonstrated to be viable alternatives of antibodies in many applications. We set out to select apple stem pitting virus (ASPV)-specific aptamers and to apply them as antibody substitutes in various immunoassay methods. The applied systematic evolution of ligands by exponential enrichment (SELEX) procedure resulted in highly discriminative aptamers selectively binding to the target virus coat protein even in complex protein matrixes. We developed protocols for exploitation of aptamers in diverse plant virus diagnosis methods, such as dot and Western blot analyses and enzyme-linked oligonucleotide assay (ELONA). Our selected aptamers proved to be superior to the available antibody in all aspects. In contrast to the antibody, the aptamers decorate both native and denaturated proteins, and ELONA produces higher signal intensity than traditional enzyme-linked immunosorbent assay (ELISA) with virus-infected plant extract. Summarily, our results present the selection and practical utilization of first plant virus-specific aptamers. Most important, the first application of ELONA for virus detection is demonstrated, which proposes a novel, more flexible, and cost-effective means of virus diagnostics.

摘要

尽管分子诊断在常规植物病毒检测中的意义正在迅速增长,但首选方法仍然是基于抗体的酶免疫测定法。在过去的十年中,适体已被证明在许多应用中是抗体的可行替代品。我们着手选择苹果茎陷斑病毒(ASPV)特异性适体,并将其用作各种免疫测定方法中的抗体替代品。应用指数富集的配体系统进化(SELEX)程序产生了高度有区别的适体,即使在复杂的蛋白质基质中,它们也能选择性地结合靶病毒外壳蛋白。我们开发了在各种植物病毒诊断方法中利用适体的方案,例如斑点和 Western blot 分析以及酶联寡核苷酸测定(ELONA)。我们选择的适体在各个方面都优于现有抗体。与抗体不同,适体可以修饰天然和变性的蛋白质,并且 ELONA 与用受感染植物提取物的传统酶联免疫吸附测定(ELISA)相比,产生更高的信号强度。总之,我们的结果展示了首次针对植物病毒的适体的选择和实际应用。最重要的是,首次展示了用于病毒检测的 ELONA 的应用,提出了一种新颖、更灵活且更具成本效益的病毒诊断方法。

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