Research Centre for Analytical Sciences, Department of Chemistry, Nankai University, Tianjin 300071, PR China.
Biosens Bioelectron. 2010 Oct 15;26(2):327-32. doi: 10.1016/j.bios.2010.08.020. Epub 2010 Aug 19.
This paper describes the construction of a DNA IMPLICATION logic gate based on triphenylmethane (TPM) dye/G-quadruplex complexes, using Ag+ and cysteine (Cys) as the two inputs, and fluorescence intensity of the TPM dye as the output signal. Free triphenylmethane (TPM) dyes emit inherently low fluorescence signal, the formation of TPM dye/G-quadruplex complexes yielded greatly enhanced fluorescence signals from the dye, and the output signal of the gate was 1. The addition of Cys had no effect on the fluorescence signal, again yielding an output of 1. However, the addition of Ag+ instead of Cys greatly disrupted the G-quadruplex structure, causing a decrease in the fluorescence of the dye, and yielding an output signal of 0. The addition of Cys into the Ag+-quenched fluorescence system led to the release of Ag+ from G-quadruplex-forming DNAs, resulting in the reformation of G-quadruplex structures and the recovery of TMP dye fluorescence, the output signal of 1 was obtained again. Compared with previously published DNA logic gates, the gate operation described here was rapid and reversible, with a reliable, nondestructive readout and excellent digital behavior. In addition, the modulation of TPM dye/G-quadruplex complex fluorescence by Ag+ and Cys could be used to develop a simple, fast, label-free and highly specific homogenous sensing methods for Ag+ and Cys.
本文构建了一个基于三苯基甲烷(TPM)染料/G-四链体复合物的 DNA 蕴涵逻辑门,以 Ag+和半胱氨酸(Cys)作为两个输入,以 TPM 染料的荧光强度作为输出信号。游离的三苯基甲烷(TPM)染料本身发射的荧光信号很弱,而 TPM 染料/G-四链体复合物的形成使染料的荧光信号大大增强,门的输出为 1。Cys 的加入对荧光信号没有影响,输出仍为 1。然而,Ag+的加入而不是 Cys 会极大地破坏 G-四链体结构,导致染料荧光减弱,输出信号为 0。将 Cys 加入到 Ag+猝灭的荧光体系中会导致 Ag+从形成 G-四链体的 DNA 中释放出来,从而重新形成 G-四链体结构并恢复 TMP 染料的荧光,再次得到输出信号为 1。与之前发表的 DNA 逻辑门相比,这里描述的门操作快速可逆,具有可靠、非破坏性的读出和良好的数字行为。此外,Ag+和 Cys 对 TPM 染料/G-四链体复合物荧光的调制可用于开发一种简单、快速、无标记且高度特异的 Ag+和 Cys 均相传感方法。