Department of Chemistry, University of Georgia, Athens, GA 30602, USA.
Department of Chemical and Biochemical Engineering, Hanbat National University, Daejeon 34158, South Korea.
Enzyme Microb Technol. 2017 Oct;105:59-63. doi: 10.1016/j.enzmictec.2017.06.010. Epub 2017 Jun 23.
Secondary alcohol dehydrogenase (SADH) from Thermoanaerobacter ethanolicus reduces ketones to chiral alcohols, and generally obeys Prelog's Rule, with binding pockets for large and small alkyl substituents, giving (S)-alcohols. We have previously shown that mutations in both the large and small pockets can alter both substrate specificity and stereoselectivity. In the present work, Met-151 and Thr-153, residues located in the small pocket, were mutated to alanine. The M151A mutant SADH shows significantly lower activity and lower stereoselectivity for reduction of aliphatic ketones than wild-type SADH. Furthermore, M151A showed non-linear kinetics for reduction of acetone. T153A SADH shows lower activity but similar stereoselectivity for ketone reduction compared to wild-type SADH. The I86A/M151A/C295A and I86A/T153A/C295A triple mutant SADH show altered specificity for reduction of substituted acetophenones. These results confirm that these mutations are useful to combine with I86A/C295A SADH to expand the small pocket of SADH and broaden the substrate specificity.
耐热发酵乙醇杆菌中的仲醇脱氢酶(SADH)将酮还原为手性醇,通常遵循普雷洛格规则,具有大烷基和小烷基取代基的结合口袋,生成(S)-醇。我们之前已经表明,大口袋和小口袋中的突变都可以改变底物特异性和立体选择性。在本工作中,位于小口袋中的残基 Met-151 和 Thr-153 突变为丙氨酸。与野生型 SADH 相比,M151A 突变 SADH 的还原脂肪酮的活性和立体选择性明显降低。此外,M151A 对丙酮的还原表现出非线性动力学。与野生型 SADH 相比,T153A SADH 的活性较低,但酮还原的立体选择性相似。I86A/M151A/C295A 和 I86A/T153A/C295A 三突变 SADH 对取代苯乙酮的还原表现出改变的特异性。这些结果证实,这些突变与 I86A/C295A SADH 结合使用,可以扩展 SADH 的小口袋并拓宽底物特异性。