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Chemoenzymatic total synthesis and structural diversification of tylactone-based macrolide antibiotics through late-stage polyketide assembly tailoring and C-H functionalization

机译:通过后期聚酮化合物的组装修饰和C-H功能化基于内酯的大环内酯类抗生素的化学酶法全合成和结构多样化

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摘要

Polyketide synthases (PKSs) represent a powerful catalytic platform capable of effecting multiple carbon-carbon bond forming reactions and oxidation state adjustments. We explored the functionality of two terminal PKS modules that produce the 16-membered tylosin macrocycle, using them as biocatalysts in the chemoenzymatic synthesis of tylactone and its subsequent elaboration to complete the first total synthesis of the juvenimicin, M-4365, and rosamicin classes of macrolide antibiotics via late-stage diversification. Synthetic chemistry was employed to generate the tylactone hexaketide chain elongation intermediate that was accepted by the juvenimicin (Juv) ketosynthase of the penultimate JuvEIV PKS module. The hexaketide is processed through two complete modules (JuvEIV and JuvEV) in vitro, which catalyze elongation and functionalization of two ketide units followed by cyclization of the resulting octaketide into tylactone. After macrolactonization, a combination of in vivo glycosylation, selective in vitro cytochrome P450-mediated oxidation, and chemical oxidation was used to complete the scalable construction of a series of macrolide natural products in as few as 15 linear steps (21 total) with an overall yield of 4.6%.
机译:聚酮化合物合酶(PKS)代表了一个强大的催化平台,能够实现多个碳-碳键形成反应和氧化态调节。我们探索了两个末端的PKS模块的功能,这些模块可产生16元的泰乐菌素大环化合物,并将它们用作生物化学催化剂来催化丁内酯的化学合成,并随后进行精加工以完成尤文霉素,M-4365和rosamicin类的第一个全合成大环内酯类抗生素通过后期多样化。合成化学用于生成丁内酯六酮化物链延长中间体,该中间体被倒数第二个JuvEIV PKS模块的幼稚素(Juv)酮合酶接受。六酮化合物在体外通过两个完整的模块(JuvEIV和JuvEV)进行加工,该模块催化两个酮化合物单元的延伸和功能化,然后环化生成的八肽至丁内酯。大环内酯化后,结合体内糖基化,选择性体外细胞色素P450介导的氧化和化学氧化,以最少15个线性步骤(共21个步骤)完成一系列大环内酯类天然产物的可扩展构建。产率4.6%。

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