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A real-time bioluminescent HTS method for measuring protein kinase activity influenced neither by ATP concentration nor by luciferase inhibition.

机译:用于测量蛋白激酶活性的实时生物发光HTS方法,该活性不受ATP浓度或荧光素酶抑制作用的影响。

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摘要

The firefly luciferin-luciferase reaction has been used to set up an assay for protein kinase based on measuring ATP consumption rate as the first-order rate constant for the kinase reaction. The assay obviates the problems encountered with previous bioluminescent protein kinase assays such as interference with the luciferase reaction from library compounds, nonlinear standard curves, and limited dynamic ranges. In the assay described in the present paper luciferase and luciferin are present during the entire kinase reaction, and the light emission can be measured continuously. In an HTS situation the light emission is measured only twice, i.e., initially and after a predetermined time. After a fivefold reduction of the ATP concentration a Z' value of 0.96 was obtained. Light emission data from samples with kinase are normalized with light emission data from blanks without kinase. First-order rate constants for the kinase reaction calculated from normalized light emission are not affected by a moderatedegree of inactivation of luciferase and luciferin during the measuring time. The constants have the same value at all ATP concentrations much lower than the K(m) of the luciferase and the kinase. These factors make the assay very robust and influenced neither by ATP concentration nor by luciferase inhibition. The measuring time depends on the kinase activity and can be varied from minutes to more than 8 h provided the kinase is stable and the evaporation of water from the wells is acceptable. The assay is linear with respect to kinase activity over three orders of magnitude. The new reagents also allowed us to determine K(m) values for ATP and for Kemptide.
机译:萤火虫萤光素-萤光素酶反应已被用于建立基于蛋白ATP消耗速率的蛋白质激酶测定方法,ATP消耗速率是激酶反应的一级速率常数。该测定消除了先前的生物发光蛋白激酶测定遇到的问题,例如干扰了来自化合物化合物的荧光素酶反应,非线性标准曲线和有限的动态范围。在本文所述的测定中,荧光素酶和荧光素存在于整个激酶反应过程中,并且可以连续地测量发光。在HTS情况下,仅两次测量光发射,即在初始时间和预定时间之后。 ATP浓度降低五倍后,Z'值为0.96。来自具有激酶的样品的发光数据用来自没有激酶的空白的发光数据标准化。从标准化发光计算的激酶反应的一级速率常数不受测量期间萤光素酶和萤光素的适度失活的影响。在所有ATP浓度下,常数的值都比萤光素酶和激酶的K(m)低得多。这些因素使测定非常可靠,并且不受ATP浓度或萤光素酶抑制的影响。测量时间取决于激酶活性,只要激酶稳定且从井中蒸发出水是可接受的,测量时间可以从数分钟到8小时以上不等。该测定关于三个数量级以上的激酶活性是线性的。新试剂还使我们能够确定ATP和Kemptide的K(m)值。

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