Medicinal Chemistry Research Laboratory, Shionogi & Co., Ltd., 3-1-1 Futaba-cho, Osaka, Toyonaka-shi, 561-0825, Japan.
Division of Applied Life Sciences, Graduate School of Agriculture, Kyoto University, Kitashirakawa-oiwake-cho, Kyoto, Sakyo-ku, 606-8502, Japan.
Appl Microbiol Biotechnol. 2017 Sep;101(17):6651-6658. doi: 10.1007/s00253-017-8414-2. Epub 2017 Jul 20.
Maltol derivatives are utilized in a variety of fields due to their metal-chelating abilities, and modification of the 2-methyl side chain is known to effectively expand their functional diversity. In the present study, microbial enzymes were screened for hydroxylating activity towards the 2-methyl group in a maltol derivative, 3-benzyloxy-2-methyl-4-pyrone (BMAL). Novosphingobium sp. SB32149 was found to have the ability to convert BMAL into 3-benzyloxy-2-hydroxymethyl-4-pyrone (BMAL-OH). The enzymes responsible, a cytochrome P450 monooxygenase (P450nov), a ferredoxin (FDXnov), and a ferredoxin reductase (FDRnov), were identified in the SB32149 strain. In the reaction with recombinant Escherichia coli expressing P450nov, FDXnov, and FDRnov, BMAL-OH was successfully produced from BMAL. Moreover, using the directed evolution approach, four amino acid substitutions, L188P/F218L/L237M in P450nov and A10T in FDXnov, were found to enhance BMAL-OH production. Consequently, up to 5.2 g/L BMAL-OH was obtained from 8.0 g/L BMAL by bioconversion using a 250-mL jar fermenter, indicating that this strain may be useful for synthesis of maltol derivatives which could have potential applications in various fields.
由于其金属螯合能力,麦芽醇衍生物在许多领域得到了应用,而对 2-甲基侧链的修饰被认为可以有效地扩展其功能多样性。在本研究中,筛选了微生物酶对麦芽醇衍生物 3-苄氧基-2-甲基-4-吡喃酮(BMAL)的 2-甲基的羟基化活性。发现新鞘氨醇单胞菌 SB32149 具有将 BMAL 转化为 3-苄氧基-2-羟甲基-4-吡喃酮(BMAL-OH)的能力。在 SB32149 菌株中鉴定出负责的酶,一种细胞色素 P450 单加氧酶(P450nov)、一种铁氧还蛋白(FDXnov)和一种铁氧还蛋白还原酶(FDRnov)。在表达 P450nov、FDXnov 和 FDRnov 的重组大肠杆菌的反应中,成功地从 BMAL 生产出 BMAL-OH。此外,使用定向进化方法,发现 P450nov 中的四个氨基酸取代 L188P/F218L/L237M 和 FDXnov 中的 A10T 可以提高 BMAL-OH 的产量。因此,通过使用 250-mL 罐式发酵罐进行生物转化,从 8.0 g/L BMAL 中获得了高达 5.2 g/L 的 BMAL-OH,表明该菌株可能可用于合成麦芽醇衍生物,这些衍生物在各个领域可能具有潜在的应用。