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Nitrite-mediated synthesis of chiral epichlorohydrin using halohydrin dehalogenase from Agrobacterium radiobacter AD1

机译:亚硝酸盐介导的根癌农杆菌AD1的卤代醇脱卤酶合成手性表氯醇

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In the current study, the haloalcohol dehalogenase HheC gene from Agrobacterium radiobacter AD1 was synthesized and expressed in Escherichia coli. After purification using Ni-nitrilotriacetic acid affinity chromatography, HheC was used in the synthesis of chiral epichlorohydrin in the presence of NO _2-. The optimal pH, temperature, and NO _2- concentration for enantioselectivity are 5.0, 37°C, and 60 mM, respectively. The maximum velocity and Michaelis constant values for (S)-epichlorohydrin are 714.3 μmol min ~(-1) mg ~(-1) and 17.2 mM, respectively, whereas those for (R)-epichlorohydrin are 166.8 μmol min ~(-1) mg ~(-1) and 29.0 mM, respectively. Under optimal conditions, (R)-epichlorohydrin with 99% enantiomeric excess was obtained after an 18 Min reaction; the yield reached 41%, which is the highest amount obtained for chiral epichlorohydrin synthesis using haloalcohol dehalogenase. In addition, (R)-epichlorohydrin with 99% enantiomeric excess was successfully obtained from 1,3-dichloro-2-propanol by the ring opening of racemic epichlorohydrin in the presence of NO _2- after the ring closure of 1,3-dichloro-2-propanol with HheC. To the best of our knowledge, the current study is the first report on the kinetic resolution of epichlorohydrin with NO _2- and synthesis of chiral epichlorohydrin with 99% enantiomeric excess from 1,3-dichloro-2-propanol by combining ring closure of 1,3-dichloro-2-propanol and ring opening of racemic epichlorohydrin.
机译:在当前的研究中,合成了来自农杆菌AD1的卤代醇脱卤酶HheC基因并在大肠杆菌中表达。在使用Ni-次氮三乙酸亲和色谱法纯化后,在NO _2-存在下,将HheC用于手性表氯醇的合成。对映选择性的最佳pH,温度和NO _2-浓度分别为5.0、37°C​​和60 mM。 (S)-表氯醇的最大速度和米氏常数分别为714.3μmolmin〜(-1)mg〜(-1)和17.2 mM,而(R)-表氯醇的最大速度和Michaelis常数为166.8μmolmin〜(-1 )mg〜(-1)和29.0 mM。在最佳条件下,反应18分钟后,可获得对映体过量99%的(R)-表氯醇;收率达到41%,这是使用卤代醇脱卤酶合成手性环氧氯丙烷的最高收率。此外,在1,3-二氯闭环后,在NO _2-存在下,由外消旋环氧氯丙烷开环,成功地从1,3-二氯-2-丙醇中获得了对映体过量99%的(R)-表氯醇。带有HheC的-2-丙醇据我们所知,当前的研究是关于NO _2-环氧氯丙烷的动力学拆分以及由1,3-二氯-2-丙醇与1,3-二氯结合的对映体过量的手性环氧氯丙烷的对映体合成的99%的首次报道。 ,3-二氯-2-丙醇和外消旋环氧氯丙烷的开环。

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