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Fluorescent substrates for haloalkane dehalogenases: Novel probes for mechanistic studies and protein labeling

机译:卤代烷烃脱氢酶的荧光底物:机械研究和蛋白质标记的新探针

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Haloalkane dehalogenases are enzymes that catalyze the cleavage of carbon-halogen bonds in halogenated compounds. They serve as model enzymes for studying structure–function relationships of 100.000 members of the α/β-hydrolase superfamily. Detailed kinetic analysis of their reaction is crucial for understanding the reaction mechanism and developing novel concepts in protein engineering. Fluorescent substrates, which change their fluorescence properties during a catalytic cycle, may serve as attractive molecular probes for studying the mechanism of enzyme catalysis. In this work, we present the development of the first fluorescent substrates for this enzyme family based on coumarin and BODIPY chromophores. Steady-state and pre-steady-state kinetics with two of the most active haloalkane dehalogenases, DmmA and LinB, revealed that both fluorescent substrates provided specificity constant two orders of magnitude higher (0.14–12.6?μMsup?1/sup ssup?1/sup) than previously reported representative substrates for the haloalkane dehalogenase family (0.00005–0.014?μMsup?1/sup ssup?1/sup). Stopped-flow fluorescence/FRET analysis enabled for the first time monitoring of all individual reaction steps within a single experiment: (i) substrate binding, (ii–iii) two subsequent chemical steps and (iv) product release. The newly introduced fluorescent molecules are potent probes for fast steady-state kinetic profiling. In combination with rapid mixing techniques, they provide highly valuable information about individual kinetic steps and mechanism of haloalkane dehalogenases. Additionally, these molecules offer high specificity and efficiency for protein labeling and can serve as probes for studying protein hydration and dynamics as well as potential markers for cell imaging.
机译:卤代烷烃脱氢酶是催化卤代化合物中碳 - 卤素键的切割的酶。它们用作用于研究α/β-水解酶超家族> 100.000成员的结构功能关系的模型酶。对其反应的详细动力学分析对于了解反应机制和在蛋白质工程中发展新颖的概念至关重要。在催化循环期间改变其荧光特性的荧光底物可以用作研究酶催化机制的吸引力的分子探针。在这项工作中,我们介绍了基于香豆素和Bodipy发色团的这种酶系列的第一荧光底物的开发。稳态和预稳态动力学,具有两种最活跃的卤代烷脱氢酶,DMMA和LINB,显示出荧光基材的特异性恒定的两个数量级(0.12-12.6Ωμm 1 S α1)比以前报道的卤代烷脱卤素酶族的代表性底物(0.00005-0.014≤μmα1 s 1 )。停止流动荧光/褶皱分析,首次监测单个实验中的所有单独反应步骤:(i)底物结合,(II-III)两种后续化学步骤和(iv)产物释放。新引入的荧光分子是快速稳态动力学分析的有效探头。结合快速混合技术,它们提供了关于卤代烷烃脱氢酶的个体动力学步骤和机制的高价值信息。另外,这些分子为蛋白质标记提供了高特异性和效率,可以作为研究蛋白质水合和动力学以及用于细胞成像的潜在标志物的探针。

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