首页> 外文期刊>The Journal of Organic Chemistry >ENZYMATIC CARBOCYCLE FORMATION IN MICROBIAL SECONDARY METABOLISM - THE MECHANISM OF THE 2-DEOXY-SCYLLO-INOSOSE SYNTHASE REACTION AS A CRUCIAL STEP IN THE 2-DEOXYSTREPTAMINE BIOSYNTHESIS IN STREPTOMYCES FRADIAE
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ENZYMATIC CARBOCYCLE FORMATION IN MICROBIAL SECONDARY METABOLISM - THE MECHANISM OF THE 2-DEOXY-SCYLLO-INOSOSE SYNTHASE REACTION AS A CRUCIAL STEP IN THE 2-DEOXYSTREPTAMINE BIOSYNTHESIS IN STREPTOMYCES FRADIAE

机译:微生物次生代谢中的酶碳形成-链霉菌2-脱氧链烷胺生物合成中2-脱氧-肌醇-肌糖合酶反应的关键步骤

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摘要

The mechanism of 2-deoxy-scyllo-inosose synthase reaction, a carbocycle formation step from D-glucose-6-phosphate in the biosynthesis of a major 2-deoxystreptamine aglycon of clinically important aminoglycoside antibiotics, was investigated with a partially purified enzyme fraction from neomycin-producing Streptomyces fradiae IFO 13147. Singly and doubly labeled D-[4-H-2]and D-[4-H-2,3-O-18]glucose-6-phosphate were used for chase experiments, and the 2-deoxy-scyllo-inosose product was analyzed by H-2-NMR and GC-MS. The deuterium label at C-4 of the substrate appeared to be retained at C-6 of the product without scrambling the doubly-labeled isotopes. Since the oxidative process with the aid of NAD(+) is essential, which was reported previously, the hydride abstraction and returning appear to take place within the same glucose molecule. These results strongly suggest that this carbocycle formation is catalyzed by a single 2-deoxy-scyllo-inosose synthase enzyme with a catalytic requirement of NAD cofactor, the mechanism of which is closely resembled to the dehydroquinate synthase in the shikimate pathway. [References: 41]
机译:研究了具有临床意义的氨基糖苷类抗生素的主要2-脱氧链胺糖苷配基在生物合成中由D-葡萄糖-6-磷酸形成碳环的步骤-2-脱氧-鞘氨醇合酶反应的机理,该酶部分纯化自产新霉素的链霉菌链霉菌IFO13147。单双标记的D- [4-H-2]和D- [4-H-2,3-O-18]葡萄糖-6-磷酸被用于追踪实验,通过H-2-NMR和GC-MS分析2-脱氧-鞘氨醇产物。底物C-4处的氘标记似乎保留在产物的C-6处,而没有加扰双标记的同位素。由于之前已报道过借助NAD(+)进行氧化的过程至关重要,因此氢化物的提取和返还似乎发生在同一葡萄糖分子内。这些结果强烈表明,这种碳环形成是由具有NAD辅因子催化需求的单个2-脱氧-鞘氨醇合酶催化的,其机制与the草酸酯途径中的脱氢奎宁合成酶非常相似。 [参考:41]

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