Hirano Satoshi, Asamizu Shumpei, Onaka Hiroyasu, Shiro Yoshitsugu, Nagano Shingo
Biometal Science Laboratory, RIKEN SPring-8 Center, Hyogo 679-5148, Japan.
J Biol Chem. 2008 Mar 7;283(10):6459-66. doi: 10.1074/jbc.M708109200. Epub 2008 Jan 1.
Violacein and the indolocarbazoles are naturally occurring bisindole products with various biological activities, including antitumor activity. Although these compounds have markedly different molecular skeletons, their biosynthetic pathways share the same intermediate "compound X," which is produced from L-tryptophan via indole-3-pyruvic acid imine. Compound X is a short-lived intermediate that is spontaneously converted to chromopyrrolic acid for indolocarbazole biosynthesis, whereas VioE transforms compound X into protodeoxyviolaceinic acid, which is further modified by other enzymes to produce violacein. Thus, VioE plays a key role in the construction of the molecular skeleton of violacein. Here, we present the crystal structure of VioE, which consists of two subunits, each of which forms a structure resembling a baseball glove. Each subunit has a positively charged pocket at the center of the concave surface of the structure. Mutagenesis analysis of the surface pocket and other surface residues showed that the surface pocket serves as an active site. We have also solved the crystal structure of a complex of VioE and phenylpyruvic acid as an analogue of a VioE-substrate complex. A docking simulation with VioE and the IPA imine dimer, which is proposed to be compound X, agreed with the results from the mutational analysis and the VioE-phenylpyruvic acid complex structure. Based on these results, we propose that VioE traps the highly reactive substrate within the surface pocket to suppress CPA formation and promote protodeoxyviolaceinic acid formation caused by proximity and orientation effects.
紫菌素和吲哚咔唑是具有多种生物活性(包括抗肿瘤活性)的天然双吲哚产物。尽管这些化合物具有明显不同的分子骨架,但它们的生物合成途径共享相同的中间体“化合物X”,该中间体由L-色氨酸通过吲哚-3-丙酮酸亚胺生成。化合物X是一种寿命短暂的中间体,可自发转化为用于吲哚咔唑生物合成的色吡咯酸,而VioE则将化合物X转化为原脱氧紫菌素酸,该酸再由其他酶进一步修饰以产生紫菌素。因此,VioE在紫菌素分子骨架的构建中起关键作用。在此,我们展示了VioE的晶体结构,它由两个亚基组成,每个亚基形成一个类似棒球手套的结构。每个亚基在结构凹面的中心有一个带正电荷的口袋。对表面口袋和其他表面残基的诱变分析表明,表面口袋作为一个活性位点。我们还解析了VioE与苯丙酮酸的复合物晶体结构,苯丙酮酸作为VioE-底物复合物的类似物。用VioE与IPA亚胺二聚体(被认为是化合物X)进行的对接模拟结果与诱变分析以及VioE-苯丙酮酸复合物结构的结果一致。基于这些结果,我们提出VioE将高反应性底物捕获在表面口袋内,以抑制CPA的形成,并通过邻近效应和取向效应促进原脱氧紫菌素酸的形成。