Innovation Laboratory, NEC Solution Innovators, Ltd., 1-18-7, Shinkiba, Koto-Ku, Tokyo 136-8627, Japan.
Graduate School of Science and Technology, Gunma University, 1-5-1 Tenjin-cho, Kiryu, Gunma 376-8515, Japan.
Sci Rep. 2017 Mar 3;7:42716. doi: 10.1038/srep42716.
We have attained a chemically modified DNA aptamer against salivary α-amylase (sAA), which attracts researchers' attention as a useful biomarker for assessing human psychobiological and social behavioural processes, although high affinity aptamers have not been isolated from a random natural DNA library to date. For the selection, we used the base-appended base (BAB) modification, that is, a modified-base DNA library containing (E)-5-(2-(N-(2-(N6-adeninyl)ethyl))carbamylvinyl)-uracil in place of thymine. After eight rounds of selection, a 75 mer aptamer, AMYm1, which binds to sAA with extremely high affinity (K < 1 nM), was isolated. Furthermore, we have successfully determined the 36-mer minimum fragment, AMYm1-3, which retains target binding activity comparable to the full-length AMYm1, by surface plasmon resonance assays. Nuclear magnetic resonance spectral analysis indicated that the minimum fragment forms a specific stable conformation, whereas the predicted secondary structures were suggested to be disordered forms. Thus, DNA libraries with BAB-modifications can achieve more diverse conformations for fitness to various targets compared with natural DNA libraries, which is an important advantage for aptamer development. Furthermore, using AMYm1, a capillary gel electrophoresis assay and lateral flow assay with human saliva were conducted, and its feasibility was demonstrated.
我们已经获得了一种针对唾液α-淀粉酶(sAA)的化学修饰 DNA 适体,尽管迄今为止尚未从随机天然 DNA 文库中分离出高亲和力适体,但它作为评估人类心理生物学和社会行为过程的有用生物标志物吸引了研究人员的注意。为了进行选择,我们使用了碱基附加碱基(BAB)修饰,即含有(E)-5-(2-(N-(2-(N6-腺嘌呤基)乙基)氨甲酰基乙烯基)尿嘧啶)的修饰碱基 DNA 文库取代胸腺嘧啶。经过八轮选择,分离出与 sAA 具有极高亲和力(K < 1 nM)的 75 mer 适体 AMYm1。此外,我们通过表面等离子体共振分析成功确定了保留与全长 AMYm1相当的靶结合活性的 36 mer 最小片段 AMYm1-3。核磁共振光谱分析表明,最小片段形成特定的稳定构象,而预测的二级结构则被认为是无序形式。因此,与天然 DNA 文库相比,BAB 修饰的 DNA 文库可以实现更多针对各种靶标的适应性的多样化构象,这是适体开发的一个重要优势。此外,使用 AMYm1 进行了毛细管凝胶电泳分析和基于人唾液的横向流动分析,并证明了其可行性。