Graduate School of Pharmaceutical Sciences, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-0033, Japan.
Chembiochem. 2010 Jun 14;11(9):1245-52. doi: 10.1002/cbic.201000173.
The solanapyrone biosynthetic gene cluster was cloned from Alternaria solani. It consists of six genes-sol1-6-coding for a polyketide synthase, an O-methyltransferase, a dehydrogenase, a transcription factor, a flavin-dependent oxidase, and cytochrome P450. The prosolanapyrone synthase (PSS) encoded by sol1 was expressed in Aspergillus oryzae and its product was identified as desmethylprosolanapyrone I (8). Although PSS is closely related to the PKSs/Diels-Alderases LovB and MlcA of lovastatin and compactin biosynthesis, it did not catalyze cycloaddition. Sol5, encoding a flavin-dependent oxidase (solanapyrone synthase, SPS), was expressed in Pichia pastoris and purified. The purified recombinant SPS showed activity for the formation of (-)-solanapyrone A (1) from achiral prosolanapyrone II (2), establishing that this single enzyme catalyzes both the oxidation and the subsequent cycloaddition reaction, possibly as a Diels-Alder enzyme.
从茄病镰刀菌中克隆了 solanapyrone 生物合成基因簇。它由六个基因(sol1-6)编码,分别编码聚酮合酶、O-甲基转移酶、脱氢酶、转录因子、黄素依赖型氧化酶和细胞色素 P450。由 sol1 编码的 prosolanapyrone 合酶(PSS)在米曲霉中表达,其产物被鉴定为去甲 prosolanapyrone I(8)。尽管 PSS 与 lovastatin 和 compactin 生物合成中的 PKSs/Diels-Alderases LovB 和 MlcA 密切相关,但它不能催化环加成反应。编码黄素依赖型氧化酶(solanapyrone 合酶,SPS)的 sol5 在巴斯德毕赤酵母中表达并纯化。纯化的重组 SPS 显示出从非手性 prosolanapyrone II(2)形成(-)-solanapyrone A(1)的活性,这表明该单一酶同时催化氧化和随后的环加成反应,可能作为 Diels-Alder 酶。