Institute of Biotechnology and Biochemical Engineering, Graz University of Technology, NAWI Graz, 8010, Graz, Austria.
Institute of Biotechnology and Biochemical Engineering, Graz University of Technology, NAWI Graz, 8010, Graz, Austria; Austrian Centre of Industrial Biotechnology (acib), 8010, Graz, Austria.
J Biotechnol. 2020 Oct 10;322:74-78. doi: 10.1016/j.jbiotec.2020.06.023. Epub 2020 Jul 17.
Sugar nucleotide-dependent (Leloir) glycosyltransferases are powerful catalysts for glycoside synthesis. Their applicability can be limited due to elaborate production of enzyme preparations deployable in biocatalytic processes. Here, we show that efficient enzyme formulation promotes glycosyltransferases for the synthesis of the natural C-glycoside nothofagin. Adding Brij-35 detergent (1 %, w/v) during sonication of the E. coli BL21-Gold (DE3) expression strain, recovery of Oryza sativa C-glycosyltransferase was enhanced by ∼3-fold, partly due to the release of enzyme activity trapped in insoluble pellet. Freeze drying of the resulting cell-free extract (∼17 U ml) reduced the volume ∼20-fold and gave ∼55 mg solids ml liquid processed, with 83 % retention of the original activity and a specific activity of 0.20 U mg solids. The Glycine max sucrose synthase was processed analogously, giving a solid enzyme preparation of 0.28 U mg in 63 % yield. Both enzyme formulations were stable for several weeks. The glycosyltransferase cascade reaction for 3'-β-C-glucosylation of phloretin (60 mM; as inclusion complex with hydroxypropyl-β-cyclodextrin) from UDP-glucose (generated in situ by sucrose synthase from 500 mM sucrose and 0.5 mM UDP) showed excellent performance metrics (≥ 98 % yield; 3.2 g l h space-time yield; ∼90 regeneration cycles for UDP). Collectively, our study demonstrates a facile procedure for solid glycosyltransferase formulations practically usable in glycoside synthesis.
糖核苷酸依赖型(Leloir)糖基转移酶是糖苷合成的有力催化剂。由于可用于生物催化过程的酶制剂的精心生产,其适用性可能会受到限制。在这里,我们表明有效的酶配方可促进糖基转移酶用于合成天然 C-糖苷体 nothofagin。在超声处理大肠杆菌 BL21-Gold(DE3)表达菌株时,添加 Brij-35 清洁剂(1%,w/v),可使水稻 C-糖基转移酶的回收率提高约 3 倍,部分原因是酶活性从不可溶沉淀中释放出来。对所得无细胞提取物(约 17 U ml)进行冷冻干燥可将体积减少约 20 倍,并可处理约 55 mg 固体 ml 液体,原始活性保留约 83%,比活度为 0.20 U mg 固体。类似地处理大豆蔗糖合酶,可得到 0.28 U mg 的固体酶制剂,产率为 63%。两种酶制剂都可以稳定数周。对于 phloretin(60 mM;与羟丙基-β-环糊精形成包合物)的 3'-β-C-葡萄糖基化的糖基转移酶级联反应,UDP-葡萄糖(由蔗糖合酶从 500 mM 蔗糖和 0.5 mM UDP 原位生成)的表现出出色的性能指标(≥98%产率;3.2 g l h 时空产率;约 90 个 UDP 再生循环)。总的来说,我们的研究展示了一种简便的方法,可用于实际应用于糖苷合成的固体糖基转移酶制剂。