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用于体外筛选的化学修饰核酸适配体:不断演进的进化过程

Chemically modified nucleic acid aptamers for in vitro selections: evolving evolution.

作者信息

Kusser W

机构信息

Invitrogen Corporation, Carlsbad, CA 92008, USA.

出版信息

J Biotechnol. 2000 Mar;74(1):27-38. doi: 10.1016/s1389-0352(99)00002-1.

Abstract

Combinatorial library selections through the systematic evolution of ligands by exponential enrichment (SELEX) technique identify so-called nucleic acid aptamers that bind with high-affinity and specificity to a wide range of selected molecules. However, the modest chemical functionality of nucleic acids poses some limits on their versatility as binders and catalysts, and, furthermore, the sensitivity of pure RNA- and DNA-based aptamers to nucleases restricts their use as therapeutic and diagnostic agents. Here we review synthetic chemistries for modifying nucleotides that have been developed to enhance the affinity of aptamers for targets and to increase their stability in biological fluids. Implementation of in vitro selections with modified nucleotides promises to be an elegant technique for the creation of ligands with novel physical and chemical properties and is anticipated to have a significant impact on biotechnology, diagnostics and drug development. The current molecular designs and applications of modified nucleotides for in vitro selections are reviewed, along with a discussion of future developments expected to further the utility of this approach in both practical and theoretical terms.

摘要

通过指数富集配体系统进化(SELEX)技术进行的组合文库筛选,可鉴定出所谓的核酸适配体,这些适配体能够以高亲和力和特异性与多种选定分子结合。然而,核酸适度的化学功能限制了它们作为结合剂和催化剂的通用性,此外,基于纯RNA和DNA的适配体对核酸酶的敏感性限制了它们作为治疗和诊断试剂的应用。在此,我们综述了用于修饰核苷酸的合成化学方法,这些方法旨在提高适配体对靶标的亲和力,并增强其在生物流体中的稳定性。采用修饰核苷酸进行体外筛选有望成为一种精巧的技术,用于创造具有新颖物理和化学性质的配体,并有望对生物技术、诊断和药物开发产生重大影响。本文综述了用于体外筛选的修饰核苷酸的当前分子设计和应用,并讨论了预期将在实际和理论层面进一步提升该方法实用性的未来发展方向。

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