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体外筛选唾液酸特异性 RNA 适体及其在快速检测唾液酸修饰糖中的应用。

In vitro selection of sialic acid specific RNA aptamer and its application to the rapid sensing of sialic acid modified sugars.

机构信息

Interdisciplinary Program for Biochemical Engineering and Biotechnology, Seoul National University, Seoul, Republic of Korea.

出版信息

Biotechnol Bioeng. 2013 Mar;110(3):905-13. doi: 10.1002/bit.24737. Epub 2012 Nov 5.

Abstract

Sialic acids (SAs) are located on the terminal positions of glycan on a cell surface, which play important role in the spread and metastasis of cancer cells and infection of pathogen. For their detection and diagnosis, the finding of SA specific ligand is an essential prerequisite. Here, RNA aptamer for N-acetylneuraminic acid (Neu5Ac), a representative of SAs, with the high affinity of 1.35 nM and the selectivity was screened by in vitro selection method. The strong binding of the screened aptamer was enough to protect the hydrolysis of Neu5Ac by neuraminidase with the stoichiometry of 1:1 molar ratio. For the rapid detection of SAs, the RNA aptamer was further engineered to the aptazyme sensor by conjugating with a ribozyme following the characterization of selected aptamer by RNase footprinting assay. Without additional desialylation, modification, or/and purification processes, the aptazyme indicated high catalytic activities in the presence of Neu5Ac over 20 µM in several minutes. Also, we observed that the aptazyme sensor shows high sensitivities to Neu5Ac-conjugated sugars as well as Neu5Ac monomer, but not in non-Neu5Ac modified sugars. The aptamer for Neu5Ac can support valuable tools in a wide range of bioanalytical applications as well as biosensors.

摘要

唾液酸(SAs)位于细胞表面聚糖的末端位置,在癌细胞的扩散和转移以及病原体的感染中发挥重要作用。为了检测和诊断,发现 SAs 特异性配体是必不可少的前提。在这里,通过体外选择方法筛选出对 N-乙酰神经氨酸(Neu5Ac),即 SAs 的一种代表,具有高亲和力(1.35 nM)和选择性的 RNA 适体。筛选出的适体的强结合足以保护神经氨酸酶对 Neu5Ac 的水解,其结合比为 1:1 摩尔比。为了快速检测 SAs,通过将核糖核酸酶足迹测定法对所选适体进行的表征,将 RNA 适体进一步工程化为适体酶传感器,与核酶连接。无需额外的去唾液酸化、修饰和/或纯化过程,在几分钟内,适体酶在超过 20 µM 的 Neu5Ac 存在下表现出高催化活性。此外,我们观察到适体酶传感器对 Neu5Ac 结合的糖以及 Neu5Ac 单体具有高灵敏度,但对非 Neu5Ac 修饰的糖没有灵敏度。Neu5Ac 的适体可以作为有价值的工具广泛应用于生物分析应用和生物传感器中。

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