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首页> 外文期刊>Nucleic acids research >High affinity nucleic acid aptamers for streptavidin incorporated into bi-specific capture ligands
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High affinity nucleic acid aptamers for streptavidin incorporated into bi-specific capture ligands

机译:用于链霉亲和素的高亲和力核酸适体并入双特异性捕获配体

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We have isolated 2′-Fluoro-substituted RNA aptamers that bind to streptavidin (SA) with an affinity around 7 ± 1.8 nM, comparable with that of recently described peptide aptamers. Binding to SA was not prevented by prior saturation with biotin, enabling nucleic acid aptamers to form useful ternary complexes. Mutagenesis, secondary structure analysis, ribonuclease footprinting and deletion analysis provided evidence for the essential structural features of SA-binding aptamers. In order to provide a general method for the exploitation of these aptamers, we produced derivatives in which they were fused to the naturally structured RNA elements, CopT or CopA. In parallel, we produced derivatives of CD4-binding aptamers fused to the complementary CopA or CopT elements. When mixed, these two chimeric aptamers rapidly hybridized, by virtue of CopA–CopT complementarity, to form stable, bi-functional aptamers that we called ‘adaptamers'. We show that a CD4–SA-binding adaptamer can be used to capture CD4 onto a SA‐derivatized surface, illustrating their general utility as indirect affinity ligands.
机译:我们已经分离出2'-氟取代的RNA适体,其与链霉亲和素(SA)结合的亲和力约为7±1.8 nM,与最近描述的肽适体相当。事先用生物素饱和并不能阻止与SA的结合,从而使核酸适体形​​成有用的三元复合物。诱变,二级结构分析,核糖核酸酶足迹和删除分析提供了SA结合适体的基本结构特征的证据。为了提供利用这些适体的一般方法,我们制备了将它们与天然结构化的RNA元件,CopT或CopA融合的衍生物。同时,我们产生了与互补的CopA或CopT元件融合的CD4结合适体的衍生物。当混合时,这两个嵌合适体通过CopA–CopT的互补性迅速杂交,形成稳定的双功能适体,我们称之为“适体”。我们表明,可以将CD4–SA结合的衔接子用于将CD4捕获到SA衍生化的表面上,说明它们作为间接亲和配体的一般用途。

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