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针对发夹结构的反义寡核苷酸的体外筛选。

In vitro selection of antisense oligonucleotides targeted to a hairpin structure.

作者信息

Mishra R K, Toulmé J J

机构信息

Laboratoire de Biophysique Moléculaire, INSERM U. 386, Université Bordeaux-II, France.

出版信息

C R Acad Sci III. 1994 Nov;317(11):977-82.

PMID:7882142
Abstract

Antisense oligonucleotides are widely used to selectively prevent pre-RNA splicing, mRNA translation or cDNA synthesis from a retroviral RNA template. However, intramolecular folding of the RNA chain can sequester the target sequence into a stable structure. Consequently, the antisense effect can be greatly reduced or even abolished. Hydrogen donor and acceptor sites are still available on nucleic acid bases involved in secondary structures. However, the rational design of antisense sequences able to recognize the three dimensional array of these sites is not available. We used an in vitro selection procedure to fish out aptastrucs, i.e., oligomers able ("apte") to bind to a structure. A population of randomly synthesized oligonucleotides was mixed with the structure of interest and oligodeoxynucleotide sequences bound to the target were selected and amplified. The selection involves the destruction of the unbound candidates by a restriction enzyme. This procedure can be used both for RNA and DNA target structures and does not require the purification of the bound oligonucleotides at each cycle of selection. Several cycles of selection-amplification, followed by cloning and sequencing, allowed us to identify three oligonucleotides able to form a complex with a DNA hairpin. Due to the sequence of the selected candidates, these aptastruc-hairpin complexes involve very likely non-canonical interactions between the two partners.

摘要

反义寡核苷酸被广泛用于选择性地阻止前体RNA剪接、mRNA翻译或逆转录病毒RNA模板的cDNA合成。然而,RNA链的分子内折叠可将靶序列隔离到一个稳定结构中。因此,反义效应可能会大大降低甚至消除。参与二级结构的核酸碱基上仍然存在氢供体和受体位点。然而,能够识别这些位点三维排列的反义序列的合理设计尚不存在。我们使用体外筛选程序来筛选适配体结构,即能够(“apte”)与一种结构结合的寡聚物。将一群随机合成的寡核苷酸与感兴趣的结构混合,选择并扩增与靶标结合的寡脱氧核苷酸序列。筛选过程包括用限制性酶破坏未结合的候选物。该程序可用于RNA和DNA靶标结构,并且在每个筛选循环中不需要纯化结合的寡核苷酸。经过几个筛选-扩增循环,随后进行克隆和测序,我们鉴定出三种能够与DNA发夹形成复合物的寡核苷酸。由于所选候选物的序列,这些适配体结构-发夹复合物很可能涉及两个伙伴之间的非经典相互作用。

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