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首页> 外文期刊>Nucleic Acids Research >Triggering nucleic acid nanostructure assembly by conditional kissing interactions
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Triggering nucleic acid nanostructure assembly by conditional kissing interactions

机译:通过条件接吻相互作用触发核酸纳米结构组件

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摘要

Nucleic acids are biomolecules of amazing versatility. Beyond their function for information storage they can be used for building nano-objects. We took advantage of loop-loop or kissing interactions between hairpin building blocks displaying complementary loops for driving the assembly of nucleic acid nano-architectures. It is of interest to make the interaction between elementary units dependent on an external trigger, thus allowing the control of the scaffold formation. To this end we exploited the binding properties of structure-switching aptamers (aptaswitch). Aptaswitches are stem-loop structured oligonucleotides that engage a kissing complex with an RNA hairpin in response to ligand-induced aptaswitch folding. We demonstrated the potential of this approach by conditionally assembling oligonucleotide nanorods in response to the addition of adenosine.
机译:核酸是令人惊叹的多功能性的生物分子。 超出其用于信息存储的功能,它们可用于构建纳米物体。 我们利用了发夹构建块之间的环路环或接吻相互作用,显示用于驱动核酸纳米体系结构的组装的互补环。 利用依赖于外部触发的基本单位之间的相互作用感兴趣,从而允许控制支架形成。 为此,我们利用了结构切换适体(Aptaswitch)的绑定属性。 Aptaswitches是茎环结构寡核苷酸,其响应于配体诱导的Aptaswitch折叠而与RNA发夹接合接合复合物。 我们通过有条件地组装寡核苷酸纳米棒响应于添加腺苷来证明这种方法的潜力。

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