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首页> 外文期刊>The Journal of biological chemistry >Mapping Targetable Sites on Human Telomerase RNA Pseudoknot/Template Domain Using 2′-OMe RNA-interacting Polynucleotide (RIPtide) Microarrays
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Mapping Targetable Sites on Human Telomerase RNA Pseudoknot/Template Domain Using 2′-OMe RNA-interacting Polynucleotide (RIPtide) Microarrays

机译:使用2'-OME RNA相互作用多核苷酸(RIPTIDE)微阵列将映射人体端粒酶RNA假瘤/模板结构域上的定位位点

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摘要

Most cellular RNAs engage in intrastrand base-pairing that gives rise to complex three-dimensional folds. This self-pairing presents an impediment toward binding of the RNA by nucleic acid-based ligands. An important step in the discovery of RNA-targeting ligands is therefore to identify those regions in a folded RNA that are accessible toward the nucleic acid-based ligand. Because the folding of RNA targets can involve interactions between nonadjacent regions and employ both Watson-Crick and non-Watson-Crick base-pairing, screening of candidate binder ensembles is typically necessary. Microarray-based screening approaches have shown great promise in this regard and have suggested that achieving complete sequence coverage would be a valuable attribute of a next generation system. Here, we report a custom microarray displaying a library of RNA-interacting polynucleotides comprising all possible 2′-OMe RNA sequences from 4- to 8-nucleotides in length. We demonstrate the utility of this array in identifying RNA-interacting polynucleotides that bind tightly and specifically to the highly conserved, functionally essential template/pseudoknot domain of human telomerase RNA and that inhibit telomerase function in vitro.
机译:大多数蜂窝RNA接合在斯科斯特兰配对中,这导致复杂的三维折叠。这种自对方式呈现核酸基配体对RNA结合的障碍。因此,发现RNA靶向配体的一个重要步骤是识别折叠RNA中的那些区域,该区域可用于核酸基配体。因为RNA靶标的折叠可以涉及非加入区域之间的相互作用,并且使用Watson-Crick和非Watson-Crick基键,通常需要筛选候选粘合剂集合。基于微阵列的筛选方法在这方面表现出很大的希望,并建议实现完整的序列覆盖将是下一代系统的有价值的属性。在这里,我们报告了一种定制的微阵列,显示包含来自4-至8核苷酸的所有可能的2'-ome RNA序列的RNA相互作用的多核苷酸库。我们证明了该阵列在鉴定紧密且特异性地与人端粒酶RNA的高度保守,功能必要的模板/假核域的RNA相互作用的多核苷酸鉴定该阵列的效用,并且在体外抑制端粒酶功能抑制端粒酶功能。

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