Kuzuyama Tomohisa, Noel Joseph P, Richard Stéphane B
Jack Skirball Chemical Biology and Proteomics Laboratory, The Salk Institute for Biological Studies, 10010 North Torrey Pines Road, La Jolla, California 92037, USA.
Nature. 2005 Jun 16;435(7044):983-7. doi: 10.1038/nature03668.
The anti-oxidant naphterpin is a natural product containing a polyketide-based aromatic core with an attached 10-carbon geranyl group derived from isoprenoid (terpene) metabolism. Hybrid natural products such as naphterpin that contain 5-carbon (dimethylallyl), 10-carbon (geranyl) or 15-carbon (farnesyl) isoprenoid chains possess biological activities distinct from their non-prenylated aromatic precursors. These hybrid natural products represent new anti-microbial, anti-oxidant, anti-inflammatory, anti-viral and anti-cancer compounds. A small number of aromatic prenyltransferases (PTases) responsible for prenyl group attachment have only recently been isolated and characterized. Here we report the gene identification, biochemical characterization and high-resolution X-ray crystal structures of an architecturally novel aromatic PTase, Orf2 from Streptomyces sp. strain CL190, with substrates and substrate analogues bound. In vivo, Orf2 attaches a geranyl group to a 1,3,6,8-tetrahydroxynaphthalene-derived polyketide during naphterpin biosynthesis. In vitro, Orf2 catalyses carbon-carbon-based and carbon-oxygen-based prenylation of a diverse collection of hydroxyl-containing aromatic acceptors of synthetic, microbial and plant origin. These crystal structures, coupled with in vitro assays, provide a basis for understanding and potentially manipulating the regio-specific prenylation of aromatic small molecules using this structurally unique family of aromatic PTases.
抗氧化剂萘萜是一种天然产物,其含有一个基于聚酮化合物的芳香核,并带有一个源自类异戊二烯(萜烯)代谢的10碳香叶基。诸如萘萜这类含有5碳(二甲基烯丙基)、10碳(香叶基)或15碳(法尼基)类异戊二烯链的杂合天然产物,具有与其未异戊烯化的芳香前体不同的生物活性。这些杂合天然产物代表了新的抗微生物、抗氧化、抗炎、抗病毒和抗癌化合物。少数负责异戊烯基连接的芳香异戊烯基转移酶(PTases)直到最近才被分离和表征。在此,我们报道了一种结构新颖的芳香PTase,即来自链霉菌属菌株CL190的Orf2的基因鉴定、生化特性以及与底物和底物类似物结合的高分辨率X射线晶体结构。在体内,Orf2在萘萜生物合成过程中将一个香叶基连接到一个源自1,3,6,8 - 四羟基萘的聚酮化合物上。在体外,Orf2催化合成的、微生物来源的和植物来源的多种含羟基芳香受体的基于碳 - 碳和基于碳 - 氧的异戊烯化反应。这些晶体结构,结合体外实验,为理解并潜在地利用这一结构独特的芳香PTase家族对芳香小分子进行区域特异性异戊烯化提供了基础。