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A novel fluorometric method for inorganic pyrophosphatase detection based on G-quadruplex-thioflavin T

机译:一种基于G-Quadreple-Thioflavin T的无机焦磷酸酶检测的一种新型荧光法

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摘要

In this paper, we propose a fluorometric approach for the highly sensitive detection of inorganic pyrophosphatase (PPase) based on G-quadruplex-thioflavin T (ThT). In the absence of PPase, Cu2+ can coordinate with pyrophosphate (PPi) to generate a Cu2+/PPi complex. Then the G-rich sequence folds into the G-quadruplex structure, which can combine with ThT to generate a remarkable fluorescent signal. In the presence of PPase, the coordinated compound can be destroyed by the PPase catalyzed hydrolysis of PPi into inorganic phosphate (Pi). The subsequent release of Cu2+ can compete with ThT to induce a tighter G-quadruplex structure, causing the release of ThT and a sharp fluorescence decrease. Based on this mechanism, a facile and quantitative strategy for PPase detection was developed. The fluorescence intensity of the system shows a linear relationship with the PPase activities in the range of 0.5-30 U/L with a detection limit as low as 0.48 U/L. The proposed strategy for fluorescence spectrometric PPase detection is convenient, cost effective, and sensitive. This can be utilized to evaluate the inhibition effect of NaF on PPase as well as diagnose PPase-related diseases.
机译:在本文中,我们提出了一种基于G-Quadreple-Thioflavin T(THT)的无机焦磷酸酶(PPase)的高敏感性检测的荧光方法。在没有PPase的情况下,Cu2 +可以与焦磷酸盐(PPI)坐标以产生Cu2 + / PPI复合物。然后将G的序列折叠到G-四逆转带结构中,可以与THT产生显着的荧光信号。在PP酶的存在下,可以通过PPI的PPI催化水解将配位化合物催化成无机磷酸盐(PI)破坏。随后的Cu2 +释放可以与THT诱导诱导较小的G-四逆转录结构,导致THT的释放和急剧荧光降低。基于该机制,开发了一种适用于PPPase检测的定量策略。系统的荧光强度显示与0.5-30 u / l范围内的PP酶活性的线性关系,检测极限为低至0.48 U / L.荧光光谱PPPase检测的提出策略方便,成本效益和敏感。这可用于评估NAF对PP酶的抑制作用以及诊断PP酶相关疾病。

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