Department of Systems Biotechnology, Konkuk University, 120 Neungdong-ro, Gwangjin-gu, Seoul, 05029, Republic of Korea.
CKD Bio Research Institute, Ansan-si, Gyeonggi-do 15604, Republic of Korea.
Enzyme Microb Technol. 2019 Jan;120:52-60. doi: 10.1016/j.enzmictec.2018.10.003. Epub 2018 Oct 6.
Enantiopure β-amino acids are essential precursors of various pharmaceuticals, agrochemicals and other industrially important chemicals. In this study, we selected sixteen potential ω-Transaminases (ω-TAs) by BLAST and phylogenetic tree analysis. These ω-TAs were cloned, purified and tested for their reactivity for the synthesis of model β-amino acid (R)-3-amino-4-(2,4,5-triflurophenyl) butanoic acid [3-ATfBA], a key precursor for sitagliptin. In an enzymatic cascade, lipase converted β-ketoester substrate to β-keto acid, which was subsequently aminated by the selected ω-TA to its corresponding β-amino acid. A potent enzyme from Ilumatobacter coccineus (ω-TAIC) was identified for the production of 3-ATfBA. The pH dependency of the product inhibition suggested that lowering the reaction pH to 7.0 can circumvent the inhibition of ω-TAIC by 3-ATfBA and about 92.3% conversion of 100 mM β-keto ester substrate could be achieved. The applicability of this enzymatic system was further evaluated at the scale of 140 mM, wherein 3-ATfBA was generated with excellent conversion (81.9%) and enantioselectivity (99% ee). Furthermore, ω-TAIC was successfully used for the synthesis of various β-amino acids from their corresponding β-keto ester substrates.
手性纯β-氨基酸是各种药物、农用化学品和其他工业重要化学品的基本前体。在这项研究中,我们通过 BLAST 和系统发育树分析选择了十六种潜在的ω-转氨酶(ω-TAs)。这些 ω-TAs 被克隆、纯化并测试了其用于合成模型β-氨基酸(R)-3-氨基-4-(2,4,5-三氟苯基)丁酸[3-ATfBA]的反应性,3-ATfBA 是西他列汀的关键前体。在酶级联反应中,脂肪酶将β-酮酯底物转化为β-酮酸,然后由选定的 ω-TA 将其转化为相应的β-氨基酸。从 Ilumatobacter coccineus 中鉴定出一种有效的酶(ω-TAIC)用于生产 3-ATfBA。产物抑制的 pH 依赖性表明,将反应 pH 降低至 7.0 可以避免 3-ATfBA 对 ω-TAIC 的抑制,并且可以实现约 100 mM β-酮酯底物的 92.3%转化率。该酶系统的适用性在 140 mM 的规模上进一步进行了评估,其中 3-ATfBA 的转化率(81.9%)和对映选择性(99%ee)均很高。此外,ω-TAIC 成功地用于各种β-氨基酸从其相应的β-酮酯底物的合成。