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Uncovering the origin of Z-configured double bonds in polyketides: intermediate E-double bond formation during borrelidin biosynthesis

机译:揭示聚酮化合物中Z-构型双键的起源:在硼瑞林生物合成过程中形成中间E-双键

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Formation of Z-configured double bonds in reduced polyketides is uncommon and their origins have not been extensively studied. To investigate the origin of the Z-configured double bond in the macrolide borrelidin, the recombinant dehydratase domains BorDH2 and BorDH3 were assayed with a synthetic analogue of the predicted tetraketide substrate. The configuration of the dehydrated products was determined to be E in both cases by comparison to synthetic standards. Detailed NMR spectroscopic analysis of the biosynthetic intermediate pre-borrelidin confirmed the E,E-configuration of the full-length polyketide synthase product. In contrast to a previously-proposed hypothesis, our results show that in this case the Z-configured double bond is not formed via dehydration from a 3 L-configured precursor, but rather as the result of a later isomerization process.
机译:在还原的聚酮化合物中形成Z-构型的双键并不常见,其起源尚未得到广泛的研究。为了研究大环内酯硼瑞林素中Z-构型双键的起源,用预测的四酮化合物底物的合成类似物测定了重组脱水酶结构域BorDH2和BorDH3。与合成标准品相比,在两种情况下脱水产物的构型均确定为E。对生物合成中间体前硼瑞林的详细NMR光谱分析证实了全长聚酮化合物合酶产物的E,E构型。与先前提出的假设相反,我们的结果表明,在这种情况下,Z构型双键不是通过3 L构型前体的脱水形成的,而是后来异构化过程的结果。

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