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首页> 外文期刊>Angewandte Chemie >Reconstitution of a Type II Polyketide Synthase that Catalyzes Polyene Formation
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Reconstitution of a Type II Polyketide Synthase that Catalyzes Polyene Formation

机译:重构II型聚酮合成酶,其催化多烯形成

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摘要

While type II polyketide synthases (PKSs) are known for producing aromatic compounds, a phylogenetically new subfamily of type II PKSs have been recently proposed to synthesize polyene structures. Here we report in vitro analysis of such a type II PKS, IgaPKS for ishigamide biosynthesis. The ketoreductase (Iga13) and dehydratase (Iga16) were shown to catalyze the reduction of a beta-keto group and dehydration of a beta-hydroxy group, respectively, to form a trans double bond. Incubation of the acyl carrier protein (Iga10), the ketosynthase/chain length factor complex (Iga11-Iga12), Iga13 and Iga16 with malonyl and hexanoyl-CoAs and NADPH followed by KOH hydrolysis resulted in the formation of four unsaturated carboxylic acids (C-8, C-10, C-12, and C-14), indicating that IgaPKS catalyzes tetraene formation by repeating the cycle of condensation, keto-reduction and dehydration with strict stereo-specificity. We propose "highly reducing type II PKS subfamily" for the polyene-producing type II PKSs.
机译:虽然II型聚酮合成酶(PKS)已知用于制备芳族化合物,但最近已经提出了II型PKS的系统新的新型亚家族以合成多烯结构。在这里,我们报告了这种II型PKS,IGAPKS的体外分析,用于甲酰胺生物合成。显示酮转酶(IgA13)和脱水酶(IgA16)分别催化β-酮基团的还原和β-羟基的脱水,形成反式双键。酰基载体蛋白(IgA10),Ketosyn酶/链长度因子复合物(IgA11-IgA12),IgA13和IgA16与丙二酰和己酰基 - COA和NADPH接下来是KOH水解,导致形成四种不饱和羧酸(C- 8,C-10,C-12和C-14),表明IGAPKS通过重复具有严格立体特异性的缩合,酮还原和脱水的循环来催化四烯形成。我们为多烯类II型PKS提出“高度减少II型PKS亚家族”。

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