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缬氨霉素生物合成:最初的关键步骤是乙酸盐(丙二酸盐)和琥珀酸盐的缩合反应。

Nonactin biosynthesis: the initial committed step is the condensation of acetate (malonate) and succinate.

作者信息

Nelson Michael E, Priestley Nigel D

机构信息

Department of Chemistry, The University of Montana, Missoula, MT 59812-1656, USA.

出版信息

J Am Chem Soc. 2002 Mar 27;124(12):2894-902. doi: 10.1021/ja016965f.

Abstract

Nonactin is a macrotetrolide antibiotic produced by Streptomyces griseus subsp. griseus ETH A7796 that has shown activity against the P170-glycoprotein efflux pump associated with multiple drug resistant cancer cells. Nonactin is a polyketide, albeit a highly atypical one. The structure is composed of two units of each of the enantiomers of nonactic acid, arranged in a macrocycle, so that the molecule has S4 symmetry and is achiral. The monomer units, (+)- and (-)-nonactic acid, are derived from acetate, succinate, and propionate, although the exact details of the assembly process are quite unclear. We have used feeding experiments with a series of multiple stable isotope labeled precursors to elucidate the details of the first committed step of nonactic acid biosynthesis. We have found that the (13)C label from 3-ketoadipate is incorporated specifically into both nonactic acid and its homologue, homononactic acid. The data conclusively show that the first committed step of nonactin biosynthesis is the coupling of a succinate derivative with either acetate or malonate. The differentiation into either nonactate or homononactate occurs after the initial condensation; the homologues are not derived from use of a different "starter unit" by the nonactate polyketide synthase. The first step of nonactin biosynthesis involves achiral intermediates; differentiation between the known enantiocomplementary biosynthesis pathways to form each enantiomer of the precursor monomer units likely occurs after the initial condensation reaction.

摘要

无活菌素是由灰色链霉菌亚种灰色链霉菌ETH A7796产生的一种大环四内酯抗生素,它已显示出对与多药耐药癌细胞相关的P170 - 糖蛋白外排泵具有活性。无活菌素是一种聚酮化合物,尽管是一种非常特殊的聚酮化合物。其结构由无活酸的两种对映体各两个单元组成,排列成一个大环,因此该分子具有S4对称性且无手性。单体单元,即(+) - 和( - ) - 无活酸,源自乙酸盐、琥珀酸盐和丙酸盐,尽管组装过程的确切细节尚不清楚。我们使用了一系列多重稳定同位素标记前体的饲喂实验来阐明无活酸生物合成第一个关键步骤的细节。我们发现,来自3 - 酮己二酸的(13)C标记特异性地掺入到无活酸及其同系物高无活酸中。数据确凿地表明,无活菌素生物合成的第一个关键步骤是琥珀酸衍生物与乙酸盐或丙二酸盐的偶联。在初始缩合之后发生向无活酸或高无活酸的分化;同系物并非源自无活酸聚酮合酶使用不同的“起始单元”。无活菌素生物合成的第一步涉及无手性中间体;在初始缩合反应之后,可能会在已知的对映体互补生物合成途径之间进行分化,以形成前体单体单元的每种对映体。

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