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通过表达 SELEX 筛选可感应苯丙氨酸的别构 DNA 酶。

Selection of allosteric dnazymes that can sense phenylalanine by expression-SELEX.

机构信息

Medical School, Huaqiao University, Xiamen 361021, P.R. China.

Chemical Engineering Institute, Huaqiao University, Xiamen 361021, P.R. China.

出版信息

Nucleic Acids Res. 2023 Jun 23;51(11):e66. doi: 10.1093/nar/gkad424.

Abstract

Aptamers are ligand-binding RNA or DNA molecules and have been widely examined as biosensors, diagnostic tools, and therapeutic agents. The application of aptamers as biosensors commonly requires an expression platform to produce a signal to report the aptamer-ligand binding event. Traditionally, aptamer selection and expression platform integration are two independent steps and the aptamer selection requires the immobilization of either the aptamer or the ligand. These drawbacks can be easily overcome through the selection of allosteric DNAzymes (aptazymes). Herein, we used the technique of Expression-SELEX developed in our laboratory to select for aptazymes that can be specifically activated by low concentrations of l-phenylalanine. We chose a previous DNA-cleaving DNAzyme known as II-R1 as the expression platform for its low cleavage rate and used stringent selection conditions to drive the selection of high-performance aptazyme candidates. Three aptazymes were chosen for detailed characterization and these DNAzymes were found to exhibit a dissociation constant for l-phenylalanine as low as 4.8 μM, a catalytic rate constant improvement as high as 20 000-fold in the presence of l-phenylalanine, and the ability to discriminate against closely related l-phenylalanine analogs including d-phenylalanine. This work has established the Expression-SELEX as an effective SELEX method to enrich high-quality ligand-responsive aptazymes.

摘要

适体是与配体结合的 RNA 或 DNA 分子,已被广泛研究作为生物传感器、诊断工具和治疗剂。适体作为生物传感器的应用通常需要一个表达平台来产生信号以报告适体-配体结合事件。传统上,适体选择和表达平台的集成是两个独立的步骤,适体选择需要固定配体或适体。这些缺点可以通过选择变构 DNA 酶(适体酶)来轻松克服。在这里,我们使用我们实验室开发的 Expression-SELEX 技术来选择可以被低浓度 l-苯丙氨酸特异性激活的适体酶。我们选择了先前已知的 DNA 切割 DNA 酶 II-R1 作为表达平台,因为其切割率低,并使用严格的选择条件来驱动高性能适体酶候选物的选择。选择了三个适体酶进行详细表征,发现这些 DNA 酶在存在 l-苯丙氨酸时的 l-苯丙氨酸解离常数低至 4.8 μM,催化速率常数提高高达 20,000 倍,并能够区分与 l-苯丙氨酸密切相关的类似物,包括 d-苯丙氨酸。这项工作确立了 Expression-SELEX 作为一种有效的 SELEX 方法,可富集高质量的配体响应适体酶。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5ff8/10287898/2ea39febbc25/gkad424figgra1.jpg

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