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Real-Time Colorimetric Assay of Inorganic Pyrophosphatase Activity Based on Reversibly Competitive Coordination of Cu~(2+) between Cysteine and Pyrophosphate Ion

机译:基于半胱氨​​酸和焦磷酸根离子之间Cu〜(2+)竞争性配位的无机焦磷酸酶活性的实时比色测定

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In this study we demonstrate a new colorimetric method for real-time pyrophosphatase (PPase) activity assay based on reversible tuning of the dispersion/aggregation states of gold nanoparticles (Au-NPs) by controlling the coordination of Cu~(2+) between cysteine and pyrophosphate ion (PPi) with PPase. The addition of Cu~(2+) to the cysteine-stabilized Au-NP dispersion results in the aggregation of Au-NPs, while the further addition of PPi to this aggregation turns the aggregated Au-NPs into their dispersed state because of the higher coordination reactivity between Cu~(2+) and PPi than that between Cu~(2+) and cysteine. The subsequent addition of PPase to the PPi-triggered dispersed Au-NPs restores the aggregation state of Au-NPs because PPase catalyzes the hydrolysis of PPi into orthophosphate and thus consumes PPi in the reaction system. In this study, we utilize this reversibility of the change between the aggregation/dispersion states of Au-NPs for real-time colorimetric monitoring of PPase activity by continuously measuring the ratio of absorbance at the wavelength of 650 nm (A_(650)) to that at 522 nm (A_(522)) in the time-dependent UV-vis spectra of Au-NP dispersions containing different activities of PPase. To calculate the kinetics of the PPase-catalyzed hydrolysis of PPi, the A_(650)/A_(522) values are converted into PPi concentrations to obtain the time-dependent changes of PPi concentrations in the dispersions containing different activities of PPase. The initial reaction rates (v_0) are thus achieved from the time-dependent logarithm of PPi concentrations with the presence of different PPase activities. Under the experimental conditions employed here, the v_0 values are linear with the PPase activity within a range from 0.025 to 0.4 U with a detection limit down to 0.010 U (S/N = 3). Moreover, the colorimetric method developed here is also employed for PPase inhibitor evaluation. This study offers a simple yet effective method for real-time PPase activity assay.
机译:在这项研究中,我们通过控制半胱氨酸中Cu〜(2+)的配位可逆调节金纳米颗粒(Au-NPs)的分散/聚集状态,证明了一种用于实时焦磷酸酶(PPase)活性测定的比色方法。和焦磷酸根离子(PPi)与PPase。向半胱氨酸稳定的Au-NP分散体中添加Cu〜(2+)导致Au-NPs聚集,而向该聚集体中进一步添加PPi则使聚集的Au-NPs处于分散状态,因为更高Cu〜(2+)与PPi之间的配位反应性比Cu〜(2+)与半胱氨酸之间的配位反应性高。随后将PPase加入到PPi触发的分散的Au-NP中,恢复了Au-NP的聚集状态,因为PPase催化PPi水解为正磷酸盐,从而在反应系统中消耗PPi。在这项研究中,我们通过连续测量650 nm(A_(650))波长对吸光度的比值,利用Au-NPs聚集/分散状态之间变化的可逆性来实时比色监测PPase活性。含PPase活性不同的Au-NP分散体随时间变化的UV-vis光谱在522 nm(A_(522))处的分子量分布。为了计算PPi催化PPi水解的动力学,将A_(650)/ A_(522)值转换为PPi浓度,以获得包含不同PPase活性的分散体中PPi浓度随时间的变化。因此,在存在不同的PPase活性的情况下,可以从PPi浓度的时间依赖性对数获得初始反应速率(v_0)。在此处采用的实验条件下,v_0值与PPase活性在0.025至0.4 U范围内呈线性关系,检测限低至0.010 U(S / N = 3)。此外,此处开发的比色法也用于PPase抑制剂评估。这项研究为实时PPase活性测定提供了一种简单而有效的方法。

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