Gallimore Andrew R, Stark Christian B W, Bhatt Apoorva, Harvey Barbara M, Demydchuk Yuliya, Bolanos-Garcia Victor, Fowler Daniel J, Staunton James, Leadlay Peter F, Spencer Jonathan B
Department of Chemistry, University of Cambridge, Cambridge, CB2 1EW, United Kingdom.
Chem Biol. 2006 Apr;13(4):453-60. doi: 10.1016/j.chembiol.2006.01.013.
Ionophoric polyethers are produced by the exquisitely stereoselective oxidative cyclization of a linear polyketide, probably via a triepoxide intermediate. We report here that deletion of either or both of the monBI and monBII genes from the monensin biosynthetic gene cluster gave strains that produced, in place of monensins A and B, a mixture of C-3-demethylmonensins and a number of minor components, including C-9-epi-monensin A. All the minor components were efficiently converted into monensins by subsequent acid treatment. These data strongly suggest that epoxide ring opening and concomitant polyether ring formation are catalyzed by the MonB enzymes, rather than by the enzyme MonCII as previously thought. Consistent with this, homology modeling shows that the structure of MonB-type enzymes closely resembles the recently determined structure of limonene-1,2-epoxide hydrolase from Rhodococcus erythropolis.
离子载体聚醚是由线性聚酮化合物通过高度立体选择性的氧化环化反应生成的,可能经由三环氧中间体。我们在此报告,从莫能菌素生物合成基因簇中缺失monBI和monBII基因中的一个或两个,会产生菌株,这些菌株产生的不是莫能菌素A和B,而是C-3-去甲基莫能菌素与一些次要成分的混合物,包括C-9-表莫能菌素A。所有次要成分经后续酸处理后均能有效转化为莫能菌素。这些数据有力地表明,环氧环开环及伴随的聚醚环形成是由MonB酶催化的,而非如先前认为的由MonCII酶催化。与此一致的是,同源建模显示MonB型酶的结构与最近确定的红平红球菌柠檬烯-1,2-环氧水解酶的结构极为相似。