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用于探究RNA功能和结构的体外筛选方法。

In vitro selection methodologies to probe RNA function and structure.

作者信息

Conrad R C, Baskerville S, Ellington A D

机构信息

Department of Chemistry, Indiana University, Bloomington 47405, USA.

出版信息

Mol Divers. 1995 Sep;1(1):69-78. doi: 10.1007/BF01715810.

Abstract

In vitro selection, or SELEX, has been used both to characterize the interaction of natural nucleic acids with proteins and to generate novel nucleic acid-binding species, or aptamers. Although numerous reports have demonstrated the power of the technique, they have not expanded on the methodologies that can be used for selection. This review focuses on the considerations and problems involved in selecting protein-binding aptamers from a random-sequence RNA pool. As an illustration, we describe two approaches to selecting aptamers to a particular target, the HTLV-I Rex protein. In the first, complete randomization is used to find an artificial, high-affinity RNA binding site. In the second, the contributions of individual nucleotides and/or base pairs to the natural Rex-binding element are determined by mutating the wild-type sequence and selecting active binding variants.

摘要

体外筛选,即指数富集的配体系统进化技术(SELEX),已被用于表征天然核酸与蛋白质之间的相互作用,并生成新型核酸结合物种或适配体。尽管众多报告已证明该技术的强大功能,但它们并未详细阐述可用于筛选的方法。本综述重点关注从随机序列RNA库中筛选蛋白质结合适配体所涉及的考虑因素和问题。作为示例,我们描述了两种针对特定靶标——人嗜T淋巴细胞病毒I型(HTLV-I)反式激活因子Rex蛋白筛选适配体的方法。第一种方法是利用完全随机化来寻找人工高亲和力RNA结合位点。第二种方法是通过对野生型序列进行突变并选择有活性的结合变体,来确定单个核苷酸和/或碱基对对天然Rex结合元件的贡献。

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