Division of Chemistry, Graduate School of Science, Hokkaido University, Sapporo 060-0810, Japan.
Org Lett. 2010 May 21;12(10):2226-9. doi: 10.1021/ol100541e.
Recently, we reported that the epoxide hydrolase Lsd19, the first enzyme shown to catalyze epoxide-opening cascades, can catalyze the conversion of a putative bisepoxide intermediate to polyether antibiotic lasalocid, which involves energetically disfavored 6-endo-tet cyclization of the epoxy alcohol. Here, we examined the substrate tolerance of Lsd19. Lsd19 accepts various substrate analogues differing in the left segment of lasalocid and epoxide stereochemistry to afford either THF-THP or THF-THF products with excellent regioselectivity.
最近,我们报道了环氧化物水解酶 LSD19,这是第一个被证明可以催化环氧化物开环级联反应的酶,它可以催化假定的双环氧化物中间体能转化为多醚抗生素莱萨洛昔,这涉及到环氧醇的不利能量的 6-endo-tet 环化。在这里,我们检查了 LSD19 的底物耐受性。Lsd19 接受各种在 lasalocid 的左部分和环氧立体化学中不同的底物类似物,以优异的区域选择性生成 THF-THP 或 THF-THF 产物。