Yan Qi, Duan Qiuyue, Huang Yuqi, Guo Jing, Zhong Liang, Wang Hong, Yi Gang
Key Laboratory of Clinical Laboratory Diagnostics (Ministry of Education of China), Department of Laboratory Medicine, Chongqing Medical University Chongqing 400016 P. R. China
Department of Clinical Laboratory, Qingdao Municipal Hospital 1 Jiaozhou Road Qingdao 266071 P. R. China.
RSC Adv. 2019 Dec 13;9(70):41305-41310. doi: 10.1039/c9ra08854g. eCollection 2019 Dec 9.
By introducing palindromic sequences into the classical exponential amplification reaction (EXPAR), we constructed a new palindromic fragment-incorporated multifunctional hairpin probe (P-HP)-mediated symmetric exponential amplification reaction (S-EXPAR), to significantly reduce the background signal caused by inherent nonspecific amplification. A G-triplex/ThT complex was used as the signal reporter for the proposed label-free DNA nanomachine. The P-HP consists of five functional regions: a C-rich region (C), a target DNA recognition region (T'), two nicking sites (X') and a palindromic fragment (P). When target DNA (T) hybridizes with P-HP, the palindromic fragment at the 3' end of P-HP is fully exposed. Then, the P-HP/T duplexes hybridize with each other through the exposed P, and EXPAR occurs automatically and continuously on both sides of P under the synergistic effect of polymerase and nicking endonuclease. This is called the S-EXPAR assay. In this system, one T converts to a large number of G-triplex fragments, which can combine with ThT within a short time. The G-triplex/ThT complexes formed act as the signal reporter in a label-free and environmentally friendly format. In this way, the limit of detection of this method is as low as 10 pM with a dynamic response range of 10 pM to 300 nM. In addition, this method can detect other nucleic acids by simply changing the T' region of the P-HP. Thus, the proposed DNA nanomachine is a potential alternative method for nucleic acid detection.
通过将回文序列引入经典指数扩增反应(EXPAR),我们构建了一种新的包含回文片段的多功能发夹探针(P-HP)介导的对称指数扩增反应(S-EXPAR),以显著降低由固有非特异性扩增引起的背景信号。使用G-四链体/噻唑橙(ThT)复合物作为所提出的无标记DNA纳米机器的信号报告分子。P-HP由五个功能区域组成:富含C的区域(C)、靶DNA识别区域(T')、两个切口位点(X')和一个回文片段(P)。当靶DNA(T)与P-HP杂交时,P-HP 3'端的回文片段完全暴露。然后,P-HP/T双链体通过暴露的P相互杂交,并且在聚合酶和切口内切核酸酶的协同作用下,EXPAR在P的两侧自动且连续地发生。这被称为S-EXPAR分析。在该系统中,一个T转化为大量的G-四链体片段,其可在短时间内与ThT结合。形成的G-四链体/ThT复合物以无标记且环境友好的形式作为信号报告分子。通过这种方式,该方法的检测限低至10 pM,动态响应范围为10 pM至300 nM。此外,该方法通过简单改变P-HP的T'区域即可检测其他核酸。因此,所提出的DNA纳米机器是一种潜在的核酸检测替代方法。