Institute of Biochemistry Department of Biotechnology and Enzyme Catalysis, University of Greifswald, Felix-Hausdorff-Straße 4, 17487, Greifswald, Germany.
Institute of Molecular Biotechnology, Graz University of Technology, Petersgasse 14, 8010, Graz, Austria.
Chembiochem. 2023 Aug 15;24(16):e202300207. doi: 10.1002/cbic.202300207. Epub 2023 Jul 25.
Biocatalytic decarboxylation of hydroxycinnamic acids yields phenolic styrenes, which are important precursors for antioxidants, epoxy coatings, adhesives and other polymeric materials. Bacillus subtilis decarboxylase (BsPAD) is a cofactor-independent enzyme that catalyzes the cleavage of carbon dioxide from p-coumaric-, caffeic-, and ferulic acid with high catalytic efficiency. Real-time spectroscopic assays for decarboxylase reactions remove the necessity of extensive sample workup, which is required for HPLC, mass spectrometry, gas chromatography, or NMR methods. This work presents two robust and sensitive assays based on photometry and fluorimetry that allow decarboxylation reactions to be followed with high sensitivity while avoiding product extraction and long analysis times. Optimized assay procedures were used to measure BsPAD activity in cell lysates and to determine the kinetic constants (K and V ) of the purified enzyme for p-coumaric-, caffeic- and ferulic acid. Substrate inhibition was shown for caffeic acid.
生物催化的羟基肉桂酸脱羧生成酚类苯乙烯,这是抗氧化剂、环氧涂料、粘合剂和其他聚合材料的重要前体。枯草芽孢杆菌脱羧酶(BsPAD)是一种不需要辅助因子的酶,能够高效地催化对香豆酸、咖啡酸和阿魏酸中的二氧化碳的裂解。用于脱羧酶反应的实时光谱分析消除了高效液相色谱法、质谱法、气相色谱法或 NMR 方法所需的广泛样品制备的必要性。这项工作提出了两种基于光度法和荧光法的稳健且灵敏的测定方法,这些方法允许在避免产物提取和长分析时间的情况下,以高灵敏度跟踪脱羧反应。优化的测定程序用于测量细胞裂解物中的 BsPAD 活性,并确定纯化酶对 p-香豆酸、咖啡酸和阿魏酸的动力学常数(K 和 V )。显示了咖啡酸的底物抑制。