Burkhardt Therese, Letzel Thomas, Drewes Jörg E, Grassmann Johanna
Chair of Urban Water Systems Engineering, Technical University of Munich, Am Coulombwall, 85748 Garching, Germany.
Biochim Biophys Acta. 2015 Dec;1850(12):2573-81. doi: 10.1016/j.bbagen.2015.09.016. Epub 2015 Sep 25.
The detailed analysis of Cytochrome P450 (CYP) catalyzed reactions is of great interest, since those are of importance for biotechnical applications, drug interaction studies and environmental research. Often cocktail approaches are carried out in order to monitor several CYP activities in a single experiment. Commonly in these approaches product formation is detected and IC50 values are determined.
In the present work, the reactions of two different CYP isoforms were monitored using real-time electrospray ionization mass spectrometry. Multiplex experiments using the highly specific CYP2A6 with its corresponding substrate coumarin as well as the highly promiscuous CYP3A4 with testosterone were conducted. Product formation and substrate depletion were simultaneously monitored and compared to the single CYP experiments. The diffusion-controlled rate of reaction and conversion rates that are used as parameters to assess the enzymatic activity were calculated for all measurements conducted.
Differences in conversion rates and the theoretical rate of reaction that were observed for single CYP and multiplex experiments, respectively, reveal the complexity of the underlying mechanisms. Findings of this study imply that there might be distinct deviations between product formation and substrate degradation when mixtures are used.
Detailed results indicate that for a comprehensive assessment of these enzymatic reactions both product and substrate should be considered.
The direct hyphenation of enzymatic reactions to mass spectrometry allows for a comprehensive assessment of enzymatic behavior. Due to the benefits of this technique, the entire system which includes substrate, product and intermediates can be investigated. Thus, besides IC50 values further information regarding the enzymatic behavior offers the opportunity for a more detailed insight.
细胞色素P450(CYP)催化反应的详细分析备受关注,因为这些反应在生物技术应用、药物相互作用研究和环境研究中具有重要意义。为了在单个实验中监测多种CYP活性,通常会采用鸡尾酒法。在这些方法中,通常会检测产物形成并确定IC50值。
在本研究中,使用实时电喷雾电离质谱监测两种不同CYP同工型的反应。进行了使用高度特异性的CYP2A6及其相应底物香豆素以及具有高度混杂性的CYP3A4与睾酮的多重实验。同时监测产物形成和底物消耗,并与单个CYP实验进行比较。对所有测量计算用作评估酶活性参数的扩散控制反应速率和转化率。
在单个CYP实验和多重实验中分别观察到的转化率差异和理论反应速率揭示了潜在机制的复杂性。本研究结果表明,当使用混合物时,产物形成和底物降解之间可能存在明显偏差。
详细结果表明,为了全面评估这些酶促反应,应同时考虑产物和底物。
酶促反应与质谱的直接联用能够全面评估酶的行为。由于该技术的优势,可以研究包括底物、产物和中间体在内的整个系统。因此,除了IC50值外,有关酶行为的更多信息为更深入的洞察提供了机会。