Makino Masatomo, Sugimoto Hiroshi, Shiro Yoshitsugu, Asamizu Shumpei, Onaka Hiroyasu, Nagano Shingo
Biometal Science Laboratory, RIKEN SPring-8 Center, Harima Institute, Hyogo 679-5148, Japan.
Proc Natl Acad Sci U S A. 2007 Jul 10;104(28):11591-6. doi: 10.1073/pnas.0702946104. Epub 2007 Jul 2.
Staurosporine isolated from Streptomyces sp. TP-A0274 is a member of the family of indolocarbazole alkaloids that exhibit strong antitumor activity. A key step in staurosporine biosynthesis is the formation of the indolocarbazole core by intramolecular C-C bond formation and oxidative decarboxylation of chromopyrrolic acid (CPA) catalyzed by cytochrome P450 StaP (StaP, CYP245A1). In this study, we report x-ray crystal structures of CPA-bound and -free forms of StaP. Upon substrate binding, StaP adopts a more ordered conformation, and conformational rearrangements of residues in the active site are also observed. Hydrogen-bonding interactions of two carboxyl groups and T-shaped pi-pi interactions with indole rings hold the substrate in the substrate-binding cavity with a conformation perpendicular to the heme plane. Based on the crystal structure of StaP-CPA complex, we propose that C-C bond formation occurs through an indole cation radical intermediate that is equivalent to cytochrome c peroxidase compound I [Sivaraja M, Goodin DB, Smith M, Hoffman BM (1989) Science 245:738-740]. The subsequent oxidative decarboxylation reaction is also discussed based on the crystal structure. Our crystallographic study shows the first crystal structures of enzymes involved in formation of the indolocarbazole core and provides valuable insights into the process of staurosporine biosynthesis, combinatorial biosynthesis of indolocarbazoles, and the diversity of cytochrome P450 chemistry.
从链霉菌属TP-A0274中分离出的星形孢菌素是具有强抗肿瘤活性的吲哚并咔唑生物碱家族的一员。星形孢菌素生物合成中的关键步骤是由细胞色素P450 StaP(StaP,CYP245A1)催化通过分子内C-C键形成和铬吡咯酸(CPA)的氧化脱羧作用形成吲哚并咔唑核心。在本研究中,我们报道了结合CPA和未结合CPA形式的StaP的X射线晶体结构。底物结合后,StaP呈现出更有序的构象,并且还观察到活性位点中残基的构象重排。两个羧基的氢键相互作用以及与吲哚环的T形π-π相互作用将底物以垂直于血红素平面的构象保持在底物结合腔中。基于StaP-CPA复合物的晶体结构,我们提出C-C键形成是通过与细胞色素c过氧化物酶化合物I等效的吲哚阳离子自由基中间体发生的[Sivaraja M,Goodin DB,Smith M,Hoffman BM(1989)Science 245:738-740]。还基于晶体结构讨论了随后的氧化脱羧反应。我们的晶体学研究展示了参与吲哚并咔唑核心形成的酶的首个晶体结构,并为星形孢菌素生物合成过程、吲哚并咔唑的组合生物合成以及细胞色素P450化学的多样性提供了有价值的见解。