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序列突变与结构改变将非催化性DNA序列转变为高效的RNA切割脱氧核酶。

Sequence Mutation and Structural Alteration Transform a Noncatalytic DNA Sequence into an Efficient RNA-Cleaving DNAzyme.

作者信息

Chan Laura, Tram Kha, Gysbers Rachel, Gu Jimmy, Li Yingfu

机构信息

Department of Biochemistry and Biomedical Sciences, McMaster University, 1280 Main St. W., Hamilton, ON, L8S 4K1, Canada.

Origins Institute, McMaster University, 1280 Main St. W., Hamilton, ON, L8S 4K1, Canada.

出版信息

J Mol Evol. 2015 Dec;81(5-6):245-53. doi: 10.1007/s00239-015-9712-x. Epub 2015 Nov 3.

Abstract

We have previously shown that through test-tube molecular evolution, an arbitrarily chosen noncatalytic DNA sequence can be evolved into a catalytic DNA (DNAzyme) with significant RNA-cleaving activity. In this study, we aim to address the question of whether the catalytic activity of such a DNAzyme can be further optimized using in vitro selection. Several cycles of selective enrichment starting with a partially randomized DNA library have resulted in the isolation of many sequence variations that show notably improved catalytic activity. Bioinformatic analysis and activity examination of several DNAzyme-substrate constructs have led to two interesting findings about sequence mutations and the secondary structure of this DNAzyme: (1) three crucial mutations have transformed the DNAzyme into 8-17, a DNAzyme that has been discovered in multiple previous in vitro selection experiments, and (2) other mutations have allowed this special 8-17 variant to make structural fine-tuning in order to cleave an arbitrarily chosen RNA-containing substrate with a defined sequence. Our study not only showcases the combined power of directed molecular evolution and in vitro selection techniques in turning a noncatalytic nucleic acid sequence into an efficient enzyme, but it also raises the question of whether mother nature has used a similar approach to evolve natural enzymes.

摘要

我们之前已经表明,通过试管分子进化,任意选择的非催化性DNA序列可以进化为具有显著RNA切割活性的催化性DNA(DNA酶)。在本研究中,我们旨在解决这样一个问题:能否通过体外筛选进一步优化这种DNA酶的催化活性。从部分随机化的DNA文库开始进行几个循环的选择性富集,已分离出许多显示出显著提高的催化活性的序列变体。对几种DNA酶-底物构建体的生物信息学分析和活性检测,得出了关于该DNA酶的序列突变和二级结构的两个有趣发现:(1)三个关键突变将该DNA酶转化为8-17,这是一种在之前多个体外筛选实验中已发现的DNA酶,(2)其他突变使这种特殊的8-17变体能够进行结构微调,以便切割具有特定序列的任意选择的含RNA底物。我们的研究不仅展示了定向分子进化和体外筛选技术在将非催化性核酸序列转化为高效酶方面的联合力量,还提出了大自然是否使用类似方法进化天然酶的问题。

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