Nishizawa Tomoyasu, Aldrich Courtney C, Sherman David H
Life Science Institute, Department of Medicinal Chemistry, College of Pharmacy, University of Michigan, Ann Arbor, MI 48109-2216, USA.
J Bacteriol. 2005 Mar;187(6):2084-92. doi: 10.1128/JB.187.6.2084-2092.2005.
Rebeccamycin, a member of the tryptophan-derived indolocarbazole family, is produced by Lechevalieria aerocolonigenes ATCC 39243. The biosynthetic pathway that specifies biosynthesis of this important metabolite is comprised of 11 genes spanning 18 kb of DNA. A presumed early enzyme involved in elaboration of the rebeccamycin aglycone is encoded by rebO, located at the left-hand region of the reb gene cluster. The deduced protein product, RebO (51.9 kDa), is an L-amino acid oxidase (L-AAO) that has 27% identity to an L-AAO from Scomber japonicus (animal, mackerel) and is a member of the family of FAD-dependent oxidase enzymes. In order to study the biochemical properties of this key enzyme, the rebO gene was overexpressed and purified from Escherichia coli. Biochemical characterization showed that RebO is dimeric, with a molecular mass of approximately 101 kDa. Further analysis revealed that the enzyme contains a noncovalently bound FAD cofactor and is reoxidized at the expense of molecular oxygen by producing one molecule of hydrogen peroxide. Based on kinetic studies, RebO shows significant preference for 7-chloro-L-tryptophan, suggesting its likely role as the natural early pathway substrate. Furthermore, the native RebO enzyme has evident, albeit limited, flexibility as shown by bioconversion studies with unnatural substrates. This work provides the first analysis of a structural enzyme involved in construction of this important class of indolocarbazole natural products.
瑞贝克霉素是色氨酸衍生的吲哚咔唑家族的一员,由产气栖热放线菌ATCC 39243产生。负责合成这种重要代谢物的生物合成途径由11个基因组成,跨越18 kb的DNA。推测参与瑞贝克霉素苷元合成的早期酶由位于reb基因簇左侧区域的rebO编码。推导的蛋白质产物RebO(51.9 kDa)是一种L-氨基酸氧化酶(L-AAO),与来自日本鲭(动物,鲭鱼)的L-AAO有27%的同一性,是FAD依赖性氧化酶家族的成员。为了研究这种关键酶的生化特性,rebO基因在大肠杆菌中过表达并纯化。生化特性表明RebO是二聚体,分子量约为101 kDa。进一步分析表明,该酶含有一个非共价结合的FAD辅因子,通过产生一分子过氧化氢以分子氧为代价进行再氧化。基于动力学研究,RebO对7-氯-L-色氨酸表现出明显的偏好,表明其可能作为天然早期途径底物的作用。此外,如对非天然底物的生物转化研究所表明的,天然RebO酶具有明显的(尽管有限)灵活性。这项工作首次分析了参与构建这类重要吲哚咔唑天然产物的一种结构酶。