Graduate School of Science and Technology, Gunma University , 1-5-1 Tenjin-cho, Kiryu, Gunma 376-8515, Japan.
Anal Chem. 2016 Jul 19;88(14):7137-44. doi: 10.1021/acs.analchem.6b01192. Epub 2016 Jul 6.
We have developed a novel RNA detection method, termed signal amplification by ternary initiation complexes (SATIC), in which an analyte sample is simply mixed with the relevant reagents and allowed to stand for a short time under isothermal conditions (37 °C). The advantage of the technique is that there is no requirement for (i) heat annealing, (ii) thermal cycling during the reaction, (iii) a reverse transcription step, or (iv) enzymatic or mechanical fragmentation of the target RNA. SATIC involves the formation of a ternary initiation complex between the target RNA, a circular DNA template, and a DNA primer, followed by rolling circle amplification (RCA) to generate multiple copies of G-quadruplex (G4) on a long DNA strand like beads on a string. The G4s can be specifically fluorescence-stained with N(3)-hydroxyethyl thioflavin T (ThT-HE), which emits weakly with single- and double-stranded RNA/DNA but strongly with parallel G4s. An improved dual SATIC system, which involves the formation of two different ternary initiation complexes in the RCA process, exhibited a wide quantitative detection range of 1-5000 pM. Furthermore, this enabled visual observation-based RNA detection, which is more rapid and convenient than conventional isothermal methods, such as reverse transcription-loop-mediated isothermal amplification, signal mediated amplification of RNA technology, and RNA-primed rolling circle amplification. Thus, SATIC methodology may serve as an on-site and real-time measurement technique for transcriptomic biomarkers for various diseases.
我们开发了一种新颖的 RNA 检测方法,称为三元起始复合物信号放大 (SATIC),其中分析物样品只需与相关试剂混合,并在等温条件(37°C)下短时间静置。该技术的优点是不需要 (i) 热退火、(ii) 反应过程中的热循环、(iii) 逆转录步骤、或 (iv) 目标 RNA 的酶促或机械片段化。SATIC 涉及目标 RNA、环形 DNA 模板和 DNA 引物之间三元起始复合物的形成,随后进行滚环扩增 (RCA),在长 DNA 链上生成多个 G-四链体 (G4),就像串珠上的珠子一样。G4 可以用 N(3)-羟乙基噻唑橙 (ThT-HE) 特异性荧光染色,与单链和双链 RNA/DNA 相比,ThT-HE 与平行 G4 发出较弱的荧光。改进的双重 SATIC 系统,在 RCA 过程中形成两种不同的三元起始复合物,表现出 1-5000 pM 的宽定量检测范围。此外,这使得基于视觉观察的 RNA 检测成为可能,与传统的等温方法(如逆转录环介导等温扩增、信号介导的 RNA 技术扩增和 RNA 启动的滚环扩增)相比,这种方法更快、更方便。因此,SATIC 方法学可以作为各种疾病转录组生物标志物的现场和实时测量技术。