Xu Jun, Wan Eva, Kim Chang-Joon, Floss Heinz G, Mahmud Taifo
Department of Chemistry, University of Washington, Box 351700, Seattle, WA 98195-1700, USA.
Department of Pharmaceutical Sciences, College of Pharmacy, Oregon State University, Corvallis, OR 97331-3507, USA.
Microbiology (Reading). 2005 Aug;151(Pt 8):2515-2528. doi: 10.1099/mic.0.28138-0.
Rifamycin B biosynthesis by Amycolatopsis mediterranei S699 involves a number of unusual modification reactions in the formation of the unique polyketide backbone and decoration of the molecule. A number of genes believed to be involved in the tailoring of rifamycin B were investigated and the results confirmed that the formation of the naphthalene ring moiety of rifamycin takes place during the polyketide chain extension and is catalysed by Rif-Orf19, a 3-(3-hydroxyphenyl)propionate hydroxylase-like protein. The cytochrome P450-dependent monooxygenase encoded by rif-orf5 is required for the conversion of the Delta12, 29 olefinic bond in the polyketide backbone of rifamycin W into the ketal moiety of rifamycin B. Furthermore, Rif-Orf3 may be involved in the regulation of rifamycin B production, as its knock-out mutant produced about 40 % more rifamycin B than the wild-type. The work also revealed that many of the genes located in the cluster are not involved in rifamycin biosynthesis, but might be evolutionary remnants carried over from an ancestral lineage.
地中海拟无枝酸菌S699合成利福霉素B的过程涉及独特聚酮化合物骨架形成及分子修饰过程中的一系列异常修饰反应。研究了一些据信参与利福霉素B修饰的基因,结果证实利福霉素萘环部分的形成发生在聚酮链延伸过程中,由一种类3-(3-羟苯基)丙酸羟化酶蛋白Rif-Orf19催化。利福霉素W聚酮骨架中的Δ12, 29烯键转化为利福霉素B的缩酮部分需要rif-orf5编码的细胞色素P450依赖性单加氧酶。此外,Rif-Orf3可能参与利福霉素B产量的调控,因为其敲除突变体产生的利福霉素B比野生型多约40%。这项研究还表明,该基因簇中的许多基因并不参与利福霉素的生物合成,而可能是来自祖先谱系的进化残余。