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共轭作用及其他结构变化对基于Cu²⁺的肽核酸酶活性的影响。

Influence of conjugation and other structural changes on the activity of Cu²⁺ based PNAzymes.

作者信息

Ghidini A, Murtola M, Strömberg R

机构信息

Karolinska Institutet, Department of Biosciences and Nutrition, Novum, Hälsovägen 7, S-14183 Huddinge, Sweden.

出版信息

Org Biomol Chem. 2016 Mar 7;14(9):2768-73. doi: 10.1039/c5ob02394g.

Abstract

We have previously shown that PNA-neocuproine conjugates can act as artificial RNA restriction enzymes. In the present study we have additionally conjugated the PNA with different entities, such as oligoethers, peptides etc. and also constructed systems where the PNA is designed to clamp the target RNA forming a triplex. Some conjugations are detrimental for the activity while most are silent which means that conjugation can be done to alter physical properties without losing activity. Conjugation with a single oligoether close to the neocuproine does enhance the rate almost twofold compared to the system without the oligoether. The systems designed to clamp the RNA target by forming a triplex retain the activity if the added oligoT sequence is 5 PNA units or shorter and extends the arsenal of artificial RNA restriction enzymes. Changing the direction of a closing base pair, where the target RNA forms a bulge, from a GC to a CG pair enhances the rate of cleavage somewhat without compromising the selectivity, leading to the so far most efficient artificial nuclease reported.

摘要

我们之前已经表明,肽核酸-新铜试剂缀合物可作为人工RNA限制酶。在本研究中,我们还将肽核酸与不同的实体(如寡醚、肽等)进行了缀合,并且构建了这样的体系,其中肽核酸被设计用于夹住靶RNA形成三链体。一些缀合对活性有害,而大多数则无影响,这意味着可以进行缀合以改变物理性质而不丧失活性。与靠近新铜试剂的单个寡醚缀合相比,不含寡醚的体系,其反应速率几乎提高了两倍。如果添加的寡聚胸腺嘧啶序列为5个肽核酸单位或更短,则通过形成三链体来夹住RNA靶标的体系会保留活性,从而扩展了人工RNA限制酶的种类。改变封闭碱基对的方向(靶RNA在此处形成一个凸起),从GC对变为CG对,在不影响选择性的情况下,能稍微提高切割速率,从而得到了迄今为止报道的最有效的人工核酸酶。

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