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Chemical synthesis and enzymatic, stereoselective hydrolysis of a functionalized dihydropyrimidine for the synthesis of β -amino acids

机译:化学合成和功能化的二氢嘧啶的酶促,立体选择性水解,用于合成β-氨基酸

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A novel substrate, 6-(4-nitrophenyl)dihydropyrimidine-2,4(1H,3H)-dione (pNO2PheDU), was chemically synthesized and analytically verified for the potential biocatalytic synthesis of enantiopure β-amino acids. The hydantoinase (EC 3.5.2.2) from Arthrobacter crystallopoietes DSM20117 was chosen to prove the enzymatic hydrolysis of this substrate, since previous investigations showed activities of this enzyme toward 6-monosubstituted dihydrouracils. Whole cell biotransformations with recombinant Escherichia coli expressing the hydantoinase showed degradation of pNO2PheDU. Additionally, the corresponding N-carbamoyl-β-amino acid (NCarbpNO2 βPhe) was chemically synthesized, an HPLC-method with chiral stationary phases for detection of this product was established and thus (S)-enantioselectivity toward pNO2PheDU has been shown. Consequently this novel substrate is a potential precursor for the enantiopure β-amino acid para-nitro-β-phenylalanine (pNO2 βPhe).
机译:化学合成了新型底物6-(4-硝基苯基)二氢嘧啶-2,4(1H,3H)-二酮(pNO2PheDU),并进行了分析验证,可用于对映纯β-氨基酸的潜在生物催化合成。选择结晶节杆菌DSM20117的乙内酰脲酶(EC 3.5.2.2)来证明该底物的酶促水解,因为先前的研究表明该酶对6-单取代的二氢尿嘧啶具有活性。用表达乙内酰脲酶的重组大肠杆菌进行全细胞生物转化显示pNO2PheDU降解。此外,化学合成了相应的N-氨基甲酰基-β-氨基酸(NCarbpNO2βPhe),建立了具有手性固定相的HPLC方法用于检测该产物,因此显示了对pNO2PheDU的(S)-对映选择性。因此,这种新型底物是对映体纯的β-氨基酸对硝基-β-苯丙氨酸(pNO2βPhe)的潜在前体。

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