Department of Chemistry, Michigan State University, East Lansing, Michigan 48824, USA.
J Org Chem. 2009 Sep 18;74(18):6953-9. doi: 10.1021/jo9009563.
The Taxus phenylalanine aminomutase (PAM) enzyme converts several (S)-alpha-arylalanines to their corresponding (R)-beta-arylalanines. After incubating various racemic substrates with 100 microg of PAM for 20 h at 31 degrees C, each (S)-alpha-arylalanine was enantioselectively isomerized to its corresponding (R)-beta-product. With racemic starting materials, the ratio of (R)-beta-arylalanine product to the (S)-alpha-substrate ranged between 0.4 and 1.8, and the remaining nonproductive (R)-alpha-arylalanine became enriched. To utilize the (R)-alpha-isomer, the catalysis of a promiscuous alanine racemase from Pseudomonas putida (KT2440) was coupled with that of PAM to increase the production of enantiopure (R)-beta-arylalanines from racemic alpha-arylalanine substrates. The inclusion of a biocatalytic racemization along with the PAM-catalyzed reaction moderately increased the overall reaction yield of enantiopure beta-arylalanines between 4% and 19% (depending on the arylalanine), which corresponded to as much as a 63% increase compared to the turnover with the aminomutase reaction alone. The use of these biocatalysts, in tandem, could potentially find application in the production of chiral beta-arylalanine building blocks, particularly, as refinements to the process are made that increase reaction flux, such as by selectively removing the desired (R)-beta-arylalanine product from the reaction mixture.
红豆杉苯丙氨酸氨基转移酶(PAM)酶将几种(S)-α-芳基丙氨酸转化为相应的(R)-β-芳基丙氨酸。将各种外消旋底物与 100μg PAM 在 31°C 下孵育 20 小时后,每种(S)-α-芳基丙氨酸都被对映选择性地异构化为相应的(R)-β-产物。对于外消旋起始材料,(R)-β-芳基丙氨酸产物与(S)-α-底物的比例在 0.4 至 1.8 之间,而未反应的(R)-α-芳基丙氨酸变得富集。为了利用(R)-α-异构体,将恶臭假单胞菌(KT2440)的丙氨酸消旋酶的混杂催化与 PAM 的催化偶联,以增加从外消旋的α-芳基丙氨酸底物生产对映纯(R)-β-芳基丙氨酸的产量。将生物催化消旋与 PAM 催化反应结合使用,可适度提高对映纯β-芳基丙氨酸的整体反应产率,介于 4%至 19%之间(具体取决于芳基丙氨酸),与仅用氨基转移酶反应相比,增加了 63%。这些生物催化剂的串联使用可能在立体β-芳基丙氨酸构建块的生产中找到应用,特别是在进行改进以增加反应通量的过程中,例如选择性地从反应混合物中去除所需的(R)-β-芳基丙氨酸产物。