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Real-time enzyme kinetics monitored by dual-color fluorescence cross-correlation spectroscopy

机译:通过双色荧光监测实时酶动力学 互相关光谱

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摘要

A method for sensitively monitoring enzyme kinetics and activities by using dual-color fluorescence cross-correlation spectroscopy is described. This universal method enables the development of highly sensitive and precise assays for real-time kinetic analyses of any catalyzed cleavage or addition reaction, where a chemical linkage is formed or cleaved through an enzyme’s action between two fluorophores that can be discriminated spectrally. In this work, a homogeneous assay with restriction endonuclease EcoRI and a 66-bp double-stranded DNA containing the GAATTC recognition site and fluorophores at each 5′ end is described. The enzyme activity can be quantified down to the low picomolar range (>1.6 pM) where the rate constants are linearly dependent on the enzyme concentrations over two orders of magnitude. Furthermore, the reactions were monitored on-line at various initial substrate concentrations in the nanomolar range, and the reaction rates were clearly represented by the Michaelis–Menten equation with a KM of 14 ± 1 nM and a kcat of 4.6 ± 0.2 min−1. In addition to kinetic studies and activity determinations, it is proposed that enzyme assays based on the dual-color fluorescence cross-correlation spectroscopy will be very useful for high-throughput screening and evolutionary biotechnology.
机译:描述了一种通过使用双色荧光互相关光谱法灵敏地监测酶动力学和活性的方法。这种通用方法可以开发出高度灵敏,精确的测定方法,用于对任何催化的裂解或加成反应进行实时动力学分析,其中通过两个荧光团之间的酶作用形成或裂解了化学键,可以通过光谱区分。在这项工作中,描述了使用限制性核酸内切酶EcoRI和在每个5'末端包含GAATTC识别位点和荧光团的66 bp双链DNA进行的均相测定。可以将酶活性定量到低皮摩尔范围(> 1.6 pM),其中速率常数线性依赖于两个数量级以上的酶浓度。此外,在纳摩尔浓度范围内的各种初始底物浓度下,可以在线监测反应,并且反应速率清楚地由Michaelis–Menten方程表示,KM为14±1 nM,kcat为4.6±0.2 min −1 。 除了动力学研究和活性测定外, 提出基于双色荧光的酶分析 互相关光谱对于高通量将非常有用 筛选和进化生物技术。

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