State Key Laboratory of Bioreactor Engineering, Shanghai Collaborative Innovation Center for Biomanufacturing, East China University of Science and Technology, Shanghai, 200237, People's Republic of China.
Appl Biochem Biotechnol. 2020 Oct;192(2):530-543. doi: 10.1007/s12010-020-03317-7. Epub 2020 May 13.
Formate dehydrogenases are critical tools for nicotinamide cofactor regeneration, but their limited catalytic efficiency (k/K) is a major drawback. A formate dehydrogenase from Burkholderia stabilis 15516 (BstFDH) was the first native NADP-dependent formate dehydrogenase reported and has the highest k/K toward NADP (k/K) compared with other FDHs that can utilize NADP as a hydrogen acceptor. However, the substrate and cofactor affinities of BstFDH are inferior to those of other FDHs, making its practical application difficult. Herein, we engineered recombinant BstFDH to enhance its HCOO and NADP affinities. Based on sequence information analysis and homologous modeling results, I124, G146, S262, and A287 were found to affect the binding affinity for HCOO and NADP. By combining these mutations, we identified a BstFDH variant (G146M/A287G) that reduced K to 0.09 mM, with a concomitant decrease in K, and gave 1.6-fold higher k/K than the wild type (WT). Furthermore, BstFDH I124V/G146H/A287G, with the lowest K of 8.51 mM, showed a catalytic efficiency that was 2.3-fold higher than that of the wild type and a decreased K of 0.11 mM. These results are beneficial for improving the performance of NADP-dependent formate dehydrogenase in the NADPH regeneration of various bioreductive reactions and provide a useful guide for engineering of the substrate and cofactor affinity of other enzymes.
甲酸脱氢酶是烟酰胺辅酶再生的关键工具,但它们有限的催化效率(k/K)是一个主要的缺点。来自 Burkholderia stabilis 15516 的甲酸脱氢酶(BstFDH)是第一个被报道的天然依赖 NADP 的甲酸脱氢酶,与其他可以利用 NADP 作为氢受体的 FDH 相比,它对 NADP 的 k/K 最高。然而,BstFDH 的底物和辅酶亲和力不如其他 FDH,这使得其实际应用变得困难。在此,我们对重组 BstFDH 进行了工程改造,以增强其 HCOO 和 NADP 亲和力。基于序列信息分析和同源建模结果,发现 I124、G146、S262 和 A287 影响对 HCOO 和 NADP 的结合亲和力。通过结合这些突变,我们鉴定出一种 BstFDH 变体(G146M/A287G),其 K 降低至 0.09 mM,同时 K 降低,k/K 比野生型(WT)高 1.6 倍。此外,BstFDH I124V/G146H/A287G 的 K 最低为 8.51 mM,表现出比野生型高 2.3 倍的催化效率和降低了 0.11 mM 的 K。这些结果有利于提高 NADP 依赖的甲酸脱氢酶在各种生物还原反应中 NADPH 再生的性能,并为其他酶的底物和辅酶亲和力的工程设计提供了有用的指导。