Harvey Barbara M, Mironenko Tatiana, Sun Yuhui, Hong Hui, Deng Zixin, Leadlay Peter F, Weissman Kira J, Haydock Stephen F
Department of Biochemistry, University of Cambridge, Cambridge CB2 1GA, UK.
Chem Biol. 2007 Jun;14(6):703-14. doi: 10.1016/j.chembiol.2007.05.011.
Nigericin was among the first polyether ionophores to be discovered, but its biosynthesis remains obscure. The biosynthetic gene cluster for nigericin has been serendipitously cloned from Streptomyces sp. DSM4137, and deletion of this gene cluster abolished the production of both nigericin and the closely related metabolite abierixin. Detailed comparison of the nigericin biosynthetic genes with their counterparts in the biosynthetic clusters for other polyketides has prompted a significant revision of the proposed common pathway for polyether biosynthesis. In particular, we present evidence that in nigericin, nanchangmycin, and monensin, an unusual ketosynthase-like protein, KSX, transfers the initially formed linear polyketide chain to a discrete acyl carrier protein, ACPX, for oxidative cyclization. Consistent with this, deletion of either monACPX or monKSX from the monensin gene cluster effectively abolished monensin A biosynthesis.
尼日利亚菌素是最早被发现的聚醚离子载体之一,但其生物合成过程仍不清楚。尼日利亚菌素的生物合成基因簇已从链霉菌属DSM4137中意外克隆出来,该基因簇的缺失消除了尼日利亚菌素和密切相关代谢物阿比里辛的产生。将尼日利亚菌素生物合成基因与其在其他聚酮化合物生物合成簇中的对应基因进行详细比较,促使人们对聚醚生物合成的拟议通用途径进行了重大修订。特别是,我们提供的证据表明,在尼日利亚菌素、南昌霉素和莫能菌素中,一种不寻常的类酮合成酶蛋白KSX将最初形成的线性聚酮链转移到一种离散的酰基载体蛋白ACPX上,进行氧化环化。与此一致的是,从莫能菌素基因簇中删除monACPX或monKSX有效地消除了莫能菌素A的生物合成。