Department of Chemical Engineering, National Taiwan University of Science and Technology, Taipei, Taiwan.
Department of Food Science, National Taiwan Ocean University, Keelung, Taiwan.
J Biotechnol. 2022 Nov 10;358:9-16. doi: 10.1016/j.jbiotec.2022.08.015. Epub 2022 Aug 27.
l-Rhamnose isomerase (l-RhI) catalyzes rare sugar isomerization between aldoses and ketoses. In an attempt to alter the substrate specificity of Thermoanaerobacterium saccharolyticus NTOU1 l-RhI (TsRhI), residue Ile102 was changed to other polar or charged amino acid residues by site-directed mutagenesis. The results of activity-screening using different substrates indicate that I102N, I102Q, and I102R TsRhIs can increase the preference against d-allose in comparison with the wild-type enzyme. The catalytic efficiencies of the purified I102N, I102Q, and I102R TsRhIs against d-allose are 148 %, 277 %, and 191 %, respectively, of that of wild-type enzyme, while those against l-rhamnose are 100 %, 167 % and 87 %, respectively. Mutant I102N, I102Q, and I102R TsRhIs were noted to have the altered substrate specificity, and I102Q TsRhI has the highest catalytic efficiency against d-allose presumably through the formation of an additional hydrogen bond with d-allose. The purified wild-type and mutant TsRhIs were further used to produce d-allose from 100 g/L d-fructose in the presence of d-allulose 3-epimerase, and the yields can reach as high as 22 % d-allulose and 12 % d-allose upon equilibrium. I102Q TsRhI takes only around half of the time to reach the same 12 % d-allose yield, suggesting that this mutant enzyme has a potential to be applied in d-allose production.
L-鼠李糖异构酶(l-RhI)催化醛糖和酮糖之间罕见的糖异构化。为了改变Thermoanaerobacterium saccharolyticus NTOU1 l-RhI(TsRhI)的底物特异性,通过定点突变将残基Ile102突变为其他极性或带电氨基酸残基。使用不同底物进行活性筛选的结果表明,与野生型酶相比,I102N、I102Q 和 I102R TsRhIs 可以增加对 d-阿洛糖的偏好。纯化的 I102N、I102Q 和 I102R TsRhIs 对 d-阿洛糖的催化效率分别比野生型酶提高了 148%、277%和 191%,而对 l-鼠李糖的催化效率分别为 100%、167%和 87%。突变体 I102N、I102Q 和 I102R TsRhIs 被发现具有改变的底物特异性,而 I102Q TsRhI 对 d-阿洛糖具有最高的催化效率,大概是通过与 d-阿洛糖形成额外的氢键。进一步在 d-阿洛酮 3-差向异构酶的存在下,使用纯化的野生型和突变型 TsRhIs 从 100g/L d-果糖生产 d-阿洛糖,达到平衡时 d-阿洛糖的产率可达 22%,d-阿洛糖的产率可达 12%。I102Q TsRhI 只需大约一半的时间即可达到相同的 12% d-阿洛糖产量,表明该突变酶有可能应用于 d-阿洛糖的生产。