College of Material, Chemistry and Chemical Engineering, Hangzhou Normal University, Hangzhou, 311121, China.
College of Material, Chemistry and Chemical Engineering, Hangzhou Normal University, Hangzhou, 311121, China.
Enzyme Microb Technol. 2021 Oct;150:109883. doi: 10.1016/j.enzmictec.2021.109883. Epub 2021 Jul 29.
Aromatic nitriles are important structural motifs that frequently existed in pharmaceutical drugs. Due to the convenient synthesis of aldoximes from aldehydes, the dehydration of aldoximes to corresponding nitriles by aldoxime dehydratases (Oxds) is considered as a safe and robust enzymatic production route. Although the Oxd genes are widely distributed in microbial kingdom, so far less than ten Oxds were expressed and further characterized. In this study, we found 26 predicted putative Oxd genes from the GenBank database using a genome mining strategy. The Oxd gene from Pseudomonas putida F1 was cloned and functionally expressed in Escherichia coli BL21 (DE3). The amino acid sequence of OxdF1 shows high identities of 33∼85 % to other characterized Oxds, and contained a ferrous heme as the catalytic site. The optimum reaction pH and temperature of recombinant OxdF1 were 7.0 and 35 °C, respectively. OxdF1 was stable in pH 7.0 potassium phosphate buffer at 30 °C, and its half-life was approximately 3.8 h. OxdF1 can efficiently dehydrate aromatic and heterocyclic aldoximes to nitriles, such as 2-bromobenzaldoxime, 2-chloro-6-fluorobenzaldoxime, thiophene-2-carboxaldoxime, and pyridine-3-aldoxime. Therefore, the recombinant OxdF1 shows a potential application in the cyanide-free synthesis of aromatic nitriles.
芳香族腈是药物中常见的重要结构基序。由于醛肟可以方便地从醛类合成,因此醛肟脱水酶(Oxds)将醛肟脱水转化为相应的腈被认为是一种安全且稳健的酶法生产途径。尽管 Oxd 基因广泛分布于微生物界,但迄今为止,只有不到十种 Oxd 被表达和进一步表征。在本研究中,我们使用基因组挖掘策略从 GenBank 数据库中发现了 26 个预测的推定 Oxd 基因。我们从恶臭假单胞菌 F1 中克隆并在大肠杆菌 BL21(DE3)中功能表达了 OxdF1 基因。OxdF1 的氨基酸序列与其他已鉴定的 Oxds 具有 33∼85%的高度同源性,并且包含一个亚铁血红素作为催化位点。重组 OxdF1 的最适反应 pH 和温度分别为 7.0 和 35°C。OxdF1 在 pH 7.0 的磷酸钾缓冲液中 30°C 下稳定,半衰期约为 3.8 小时。OxdF1 可以有效地将芳香族和杂环醛肟脱水为腈,如 2-溴苯甲醛肟、2-氯-6-氟苯甲醛肟、噻吩-2-羧醛肟和吡啶-3-醛肟。因此,重组 OxdF1 在无氰化物合成芳香族腈方面具有潜在的应用价值。