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首页> 外文期刊>Nucleic acids research >Short bioactive Spiegelmers to migraine‐associated calcitonin gene‐related peptide rapidly identified by a novel approach: Tailored‐SELEX
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Short bioactive Spiegelmers to migraine‐associated calcitonin gene‐related peptide rapidly identified by a novel approach: Tailored‐SELEX

机译:通过新型方法快速鉴定出与偏头痛相关的降钙素基因相关肽具有短生物活性的Spiegelmers

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摘要

We developed an integrated method to identify aptamers with only 10 fixed nucleotides through ligation and removal of primer binding sites within the systematic evolution of ligands by exponential enrichment (SELEX) process. This Tailored‐SELEX approach was validated by identifying a Spiegelmer (‘mirror‐image aptamer') that inhibits the action of the migraine‐associated target calcitonin gene‐related peptide 1 (α‐CGRP) with an IC50 of 3 nM at 37°C in cell culture. Aptamers are oligonucleotide ligands that can be generated to bind to targets with high affinity and specificity. Stabilized aptamers and Spiegelmers have shown activity in vivo and may be used as therapeutics. Aptamers are isolated by in vitro selection from combinatorial nucleic acid libraries that are composed of a central randomized region and additional fixed primer binding sites with ~30–40 nt. The identified sequences are usually not short enough for efficient chemical Spiegelmer synthesis, post‐SELEX stabilization of aptamers and economical production. If the terminal primer binding sites are part of the target recognizing domain, truncation of aptamers has proven difficult and laborious. Tailored‐SELEX results in short sequences that can be tested more rapidly in biological systems. Currently, our identified CGRP binding Spiegelmer serves as a lead compound for in vivo studies.
机译:我们开发了一种通过连接和通过指数富集(SELEX)过程在配体的系统进化中去除引物结合位点来鉴定仅10个固定核苷酸的适体的综合方法。通过确定一种Spiegelmer(“镜像适体”)验证了这种量身定制的SELEX方法,该镜像蛋白可抑制具有IC 50 3 nM。适体是寡核苷酸配体,可以产生以高亲和力和特异性结合靶标。稳定的适体和镜像异构体已经在体内显示出活性,可以用作治疗剂。通过体外选择从组合核酸文库中分离适体,该核酸文库由一个中央随机区域和约30–40 nt的其他固定引物结合位点组成。鉴定出的序列通常不够短,不足以进行有效的化学Spiegelmer合成,SELEX后适体的稳定和经济的生产。如果末端引物结合位点是靶标识别域的一部分,则适体的截短被证明是困难且费力的。量身定制的SELEX产生了短序列,可以在生物系统中更快地对其进行测试。目前,我们鉴定出的结合CGRP的Spiegelmer可作为体内研究的先导化合物。

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