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一种多酶生物发光时间分辨焦磷酸测定法。

A multienzyme bioluminescent time-resolved pyrophosphate assay.

作者信息

Sun Ye, Jacobson K Bruce, Golovlev Val

机构信息

Sci-Tec, Inc., 10425 Cogdill Road, Suite 300, Knoxville, TN 37932, USA.

出版信息

Anal Biochem. 2007 Aug 15;367(2):201-9. doi: 10.1016/j.ab.2007.04.023. Epub 2007 Apr 25.

Abstract

We have developed a high-sensitivity assay for measurement of inorganic pyrophosphate (PPi) in adenosine 5'-triphosphate (ATP)-contaminated samples. The assay is based on time-resolved measurements of the luminescence kinetics and implements multiple enzymes to convert PPi to ATP that is, in turn, utilized to produce light and to hydrolyze PPi for measurement of the steady state background luminescence. A theoretical model for describing luminescence kinetics and optimizing composition of the assay detection mixture is presented. We found that the model is in excellent agreement with the experimental results. We have developed and evaluated two algorithms for PPi measurement from luminescence kinetics acquired from ATP-contaminated samples. The first algorithm is considered to be the method of choice for analysis of long, i.e., 3-5 min, kinetics. The activity of enzymes is controlled during the experiment; the sensitivity of PPi detection is about 7 pg/ml or 15 pM of PPi in ATP-contaminated samples. The second algorithm is designed for analysis of short, i.e., less than 1-min, luminescence kinetics. It has about 20 pM PPi detection sensitivity and may be the better choice for assays in microplate format, where a short measurement time is required. The PPi assay is primarily developed for RNA expression analysis, but it also can be used in various applications that require high-sensitivity PPi detection in ATP-contaminated samples.

摘要

我们开发了一种高灵敏度检测方法,用于测量受腺苷5'-三磷酸(ATP)污染的样品中的无机焦磷酸(PPi)。该检测方法基于发光动力学的时间分辨测量,并采用多种酶将PPi转化为ATP,进而利用ATP产生光并水解PPi以测量稳态背景发光。本文提出了一个用于描述发光动力学和优化检测混合物组成的理论模型。我们发现该模型与实验结果高度吻合。我们开发并评估了两种从受ATP污染的样品中获取的发光动力学测量PPi的算法。第一种算法被认为是分析较长(即3 - 5分钟)动力学的首选方法。在实验过程中酶的活性受到控制;在受ATP污染的样品中,PPi检测的灵敏度约为7 pg/ml或15 pM的PPi。第二种算法设计用于分析较短(即小于1分钟)的发光动力学。它具有约20 pM的PPi检测灵敏度,对于需要短测量时间的微孔板检测可能是更好的选择。PPi检测方法主要是为RNA表达分析而开发的,但它也可用于各种需要在受ATP污染的样品中进行高灵敏度PPi检测的应用。

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