Chemical Process Engineering Research Unit, University of Oulu, P.O. Box 4300, Oulu 90014, Finland.
Chemical Process Engineering Research Unit, University of Oulu, P.O. Box 4300, Oulu 90014, Finland.
Enzyme Microb Technol. 2024 Dec;181:110519. doi: 10.1016/j.enzmictec.2024.110519. Epub 2024 Oct 3.
Tyrosine phenol lyase (TPL) synthesises L-tyrosine derivatives from monophenols, pyruvate and ammonia. Production of such high-value aromatic chemicals from biomass-derived raw materials is of great interest. In this study, six monophenols (guaiacol, phenol, o-cresol, m-cresol, catechol and syringol) were chosen based on the structure of lignin and were studied as substrates in the enzymatic reaction. Single monophenol reactions (SMR) and binary monophenol reactions (BMR) with guaiacol were carried out. TPL-M379V was found to be selective towards guaiacol (84.5 % conv.). The highest single activity was measured towards phenol (93.9 % conv.). However, the enzyme preferred guaiacol over phenol in the BMRs. Syringol was found to be inert in the reaction, whereas catechol had an inhibitory effect on the enzymatic reaction, in addition to causing degradation of all the substrates in the medium. Doubling the guaiacol concentration in the SMR did not significantly increase the production of 3-O-methyldopa (conv. 45.9 %). However, in the binary reaction systems the total monophenol conversions were higher with guaiacol and phenol (total 62.4 %) or o-cresol (total 57.1 %). This indicates possible substrate/product specific inhibition. The study provides new data on activity, selectivity and inhibitory effects of monophenols in the synthetic reaction catalysed by TPL-M379V, especially in mixed-substrate reactions.
酪氨酸酚裂解酶(TPL)能够利用单酚类、丙酮酸和氨合成 L-酪氨酸衍生物。从生物质衍生原料生产这些高附加值的芳香族化学品具有重要意义。在这项研究中,选择了 6 种单酚类物质(愈创木酚、苯酚、邻甲酚、间甲酚、儿茶酚和丁香酚),其结构与木质素相似,被用作酶反应中的底物。进行了单种单酚反应(SMR)和以愈创木酚为基础的两种单酚反应(BMR)。发现 TPL-M379V 对愈创木酚具有选择性(84.5%转化率)。酚的单种酶活性最高(93.9%转化率)。然而,在 BMR 中,酶更倾向于选择愈创木酚而非苯酚。发现丁香酚在反应中无活性,而儿茶酚除了导致介质中所有底物降解外,对酶反应还有抑制作用。在 SMR 中,将愈创木酚浓度提高一倍并不会显著增加 3-O-甲基多巴的产量(转化率为 45.9%)。然而,在二元反应体系中,愈创木酚和苯酚(总转化率为 62.4%)或邻甲酚(总转化率为 57.1%)的总单酚转化率更高。这表明可能存在底物/产物特异性抑制。该研究为 TPL-M379V 催化的合成反应中单酚的活性、选择性和抑制作用提供了新的数据,特别是在混合底物反应中。