Mahmud T, Xu J, Choi Y U
Department of Chemistry, Box 351700, University of Washington, Seattle, Washington 98195-1700, USA.
J Org Chem. 2001 Jul 27;66(15):5066-73. doi: 10.1021/jo0101003.
In validamycin A biosynthesis, as well as that of acarbose, the valienamine and validamine moieties are ultimately derived from a C(7) sugar, sedoheptulose 7-phosphate, which is cyclized to 2-epi-5-epi-valiolone by a cyclase that operates via a dehydroquinate (DHQ) synthase-like mechanism. 2-epi-5-epi-Valiolone is first epimerized at C-2 to give 5-epi-valiolone and then dehydrated between C-5 and C-6 to yield valienone. To probe the dehydration mechanism of 5-epi-valiolone to valienone, stereospecifically 6alpha- and 6beta-monodeuterated 5-epi-valiolones were synthesized. The key step in the synthesis was desulfurization of the tetrabenzyl-6,6-bis(methylthio)-5-epi-valiolone and introduction of the deuterium utilizing Zn, NiCl(2), ND(4)Cl/D(2)O, and THF. Extensive studies using various combinations of protio- and deuteroreagents and solvents probed the mechanism of the reductive desulfurization, which is crucial for the preparation of stereospecifically monodeuterated 5-epi-valiolones. Incorporation experiments with the labeled precursors in the validamycin A producer strain, Streptomyces hygroscopicus var. limoneus, revealed that the dehydration of 5-epi-valiolone to valienone occurs by a syn elimination of water.
在井冈霉素A生物合成以及阿卡波糖生物合成中,缬氨霉素和有效胺部分最终来源于一种C(7)糖,即景天庚酮糖7-磷酸,它通过一种经由脱氢奎尼酸(DHQ)合酶样机制起作用的环化酶环化生成2-表-5-表-缬草酸。2-表-5-表-缬草酸首先在C-2位发生差向异构化生成5-表-缬草酸,然后在C-5和C-6之间脱水生成缬烯酮。为了探究5-表-缬草酸脱水生成缬烯酮的机制,合成了立体特异性的6α-和6β-单氘代5-表-缬草酸。合成中的关键步骤是四苄基-6,6-双(甲硫基)-5-表-缬草酸的脱硫以及利用锌、氯化镍、ND(4)Cl/D(2)O和四氢呋喃引入氘。使用各种质子和氘代试剂及溶剂组合进行的广泛研究探究了还原脱硫的机制,这对于制备立体特异性的单氘代5-表-缬草酸至关重要。用标记前体在井冈霉素A产生菌吸水链霉菌柠檬变种中进行的掺入实验表明,5-表-缬草酸脱水生成缬烯酮是通过水的顺式消除发生的。