Hong Lin, Zhao Zongbao, Liu Hung-wen
Division of Medicinal Chemistry, College of Pharmacy and Department of Chemistry and Biochemistry, University of Texas at Austin, Austin, Texas 78712, USA.
J Am Chem Soc. 2006 Nov 8;128(44):14262-3. doi: 10.1021/ja0649670.
The C-3 deoxygenation step in the biosynthesis of d-forosamine (4-N,N-dimethylamino-2,3,4,6-tetradeoxy-d-threo-hexopyranose), a constituent of spinosyn produced by Saccharopolyspora spinosa, was investigated. The spnQ gene, proposed to encode a TDP-4-keto-2,6-dideoxy-d-glucose 3-dehydratase was cloned and overexpressed in E. coli. Characterization of the purified enzyme established that it is a PMP and iron-sulfur containing enzyme which catalyzes the C-3 deoxygenation in a reductase-dependent manner similar to that of the previously well characterized hexose 3-dehydrase E1 from Yersinia pseudotuberculosis. However, unlike E1, which has evolved to work with a specific reductase partner present in its gene cluster, SpnQ lacks a specific reductase, and works efficiently with general cellular reductases ferredoxin/ferredoxin reductase or flavodoxin/flavodoxin reductase. SpnQ also catalyzes C-4 transamination in the absence of an electron transfer intermediary and in the presence of PLP and l-glutamate. Under the same conditions, both E1 and the related hexose 3-dehydrase, ColD, catalyze C-3 deoxygenation. Thus, SpnQ possesses important features which distinguish it from other well studied homologues, suggesting unique evolutionary pathways for each of the three hexose 3-dehydrases studied thus far.
对多杀菌素(由刺糖多孢菌产生)的一种成分d - 福乐糖胺(4 - N,N - 二甲基氨基 - 2,3,4,6 - 四脱氧 - d - 苏式 - 己吡喃糖)生物合成过程中的C - 3脱氧步骤进行了研究。推测编码TDP - 4 - 酮 - 2,6 - 二脱氧 - d - 葡萄糖3 - 脱水酶的spnQ基因被克隆并在大肠杆菌中过表达。对纯化酶的特性分析表明,它是一种含磷酸吡哆醛(PMP)和铁硫的酶,以依赖还原酶的方式催化C - 3脱氧,这与之前已充分表征的来自假结核耶尔森菌的己糖3 - 脱水酶E1相似。然而,与已进化到能与基因簇中存在的特定还原酶伙伴协同工作的E1不同,SpnQ缺乏特定的还原酶,能与一般的细胞还原酶铁氧还蛋白/铁氧还蛋白还原酶或黄素氧还蛋白/黄素氧还蛋白还原酶高效协同工作。在没有电子传递中间体且存在磷酸吡哆醛(PLP)和L - 谷氨酸的情况下,SpnQ还催化C - 4转氨作用。在相同条件下,E1和相关的己糖3 - 脱水酶ColD都催化C - 3脱氧。因此,SpnQ具有一些重要特征,使其有别于其他经过充分研究的同源物,这表明迄今为止所研究的三种己糖3 - 脱水酶各自具有独特的进化途径。