van den Biggelaar Ludivine, Soumillion Patrice, Debecker Damien P
Institute of Condensed Matter and Nanosciences, UCLouvain Place Louis Pasteur 1 1348 Louvain-la-Neuve Belgium
Louvain Institute of Biomolecular Science and Technology, UCLouvain Place Croix du Sud 2 1348 Louvain-la-Neuve Belgium.
RSC Adv. 2019 Jun 12;9(32):18538-18546. doi: 10.1039/c9ra02433f. eCollection 2019 Jun 10.
Transaminases were immobilized onto macrocellular silica monoliths and used for carrying a continuous flow mode transamination reaction. Monoliths were prepared an emulsion-templated sol-gel method and functionalised by amino-moieties (3-aminopropyl-triethoxysilane, APTES) in order to covalently immobilize the enzymes, using glutaraldehyde as a cross-linking agent. In order to obtain higher performance and improved reproducibility, we investigate the key parameters of APTES functionalisation and of enzyme grafting. Four functionalisation protocols were studied. We show that enhancing the homogeneity of the APTES grafting and controlling the moisture level during functionalisation led to a 3-fold increase in activity as compared to the previously reported data, and greatly improved the reproducibility. Additionally, we report a strong beneficial effect of running the enzyme immobilisation at room temperature instead of 4 °C, further enhancing the obtained activity. Finally, the popular method which consists of stabilizing the covalent attachment of the enzyme by reducing the imine bonds formed between the enzyme and the functionalised surface was investigated. We highlight a strong enzyme deactivation caused by cyanoborohydride, making this strategy irrelevant in this case. The improvements presented here led to more active macrocellular monoliths, of general interest for continuous flow mode biocatalysis.
转氨酶被固定在大孔硅胶整体柱上,并用于进行连续流动模式的转氨反应。整体柱采用乳液模板法溶胶 - 凝胶法制备,并通过氨基部分(3 - 氨丙基 - 三乙氧基硅烷,APTES)进行功能化,以便使用戊二醛作为交联剂共价固定酶。为了获得更高的性能和更好的重现性,我们研究了APTES功能化和酶接枝的关键参数。研究了四种功能化方案。我们表明,与先前报道的数据相比,提高APTES接枝的均匀性并在功能化过程中控制水分含量可使活性提高3倍,并大大提高了重现性。此外,我们报告了在室温而非4℃下进行酶固定化具有很强的有益效果,进一步提高了获得的活性。最后,研究了通过还原酶与功能化表面之间形成的亚胺键来稳定酶共价连接的常用方法。我们强调了氰基硼氢化钠会导致强烈的酶失活,使得这种策略在这种情况下不适用。这里提出的改进导致了更具活性的大孔整体柱,这对于连续流动模式生物催化具有普遍意义。