Department of Chemical Engineering, Konkuk University, Seoul 05029, Korea.
Systems Biotechnology Research Center, KIST Gangneung Institute of Natural Products, 25451, Republic of Korea.
Sci Rep. 2016 Sep 16;6:33438. doi: 10.1038/srep33438.
A sorbitol dehydrogenase (GoSLDH) from Gluconobacter oxydans G624 (G. oxydans G624) was expressed in Escherichia coli BL21(DE3)-CodonPlus RIL. The complete 1455-bp codon-optimized gene was amplified, expressed, and thoroughly characterized for the first time. GoSLDH exhibited Km and kcat values of 38.9 mM and 3820 s(-1) toward L-sorbitol, respectively. The enzyme exhibited high preference for NADP(+) (vs. only 2.5% relative activity with NAD(+)). GoSLDH sequencing, structure analyses, and biochemical studies, suggested that it belongs to the NADP(+)-dependent polyol-specific long-chain sorbitol dehydrogenase family. GoSLDH is the first fully characterized SLDH to date, and it is distinguished from other L-sorbose-producing enzymes by its high activity and substrate specificity. Isothermal titration calorimetry showed that the protein binds more strongly to D-sorbitol than other L-sorbose-producing enzymes, and substrate docking analysis confirmed a higher turnover rate. The high oxidation potential of GoSLDH for D-sorbitol was confirmed by cyclovoltametric analysis. Further, stability of GoSLDH significantly improved (up to 13.6-fold) after cross-linking of immobilized enzyme on silica nanoparticles and retained 62.8% residual activity after 10 cycles of reuse. Therefore, immobilized GoSLDH may be useful for L-sorbose production from D-sorbitol.
氧化葡萄糖酸杆菌(Gluconobacter oxydans)G624 的山梨醇脱氢酶(GoSLDH)在大肠杆菌 BL21(DE3)-CodonPlus RIL 中表达。首次对全长 1455bp 的密码子优化基因进行了扩增、表达和深入表征。GoSLDH 对 L-山梨醇的 Km 和 kcat 值分别为 38.9mM 和 3820s(-1)。该酶对 NADP(+)(与 NAD(+) 相比仅有 2.5%的相对活性)表现出高偏好性。GoSLDH 的测序、结构分析和生化研究表明,它属于 NADP(+)-依赖的多元醇特异性长链山梨醇脱氢酶家族。GoSLDH 是迄今为止首个被完全表征的 SLDH,它与其他 L-阿拉伯糖产生酶的区别在于其高活性和底物特异性。等温滴定量热法表明,该蛋白与 D-山梨醇的结合力强于其他 L-阿拉伯糖产生酶,底物对接分析证实其周转率更高。循环伏安法分析证实了 GoSLDH 对 D-山梨醇的高氧化电位。进一步,固定化酶在硅胶纳米颗粒上交联后,GoSLDH 的稳定性显著提高(最高提高 13.6 倍),重复使用 10 次后仍保留 62.8%的残余活性。因此,固定化 GoSLDH 可能有助于从 D-山梨醇生产 L-阿拉伯糖。