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1-Alkoxyvinyl Ester as an Excellent Acyl Donor: Efficient Macrolactone Synthesis

机译:1-烷氧基乙烯基酯作为优异的酰基供体:有效的宏裂解剂合成

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Ketene acetal derivatives, such as 1-alkoxyvinyl esters and O-silyl ketene acetals, belong to the category of O-substituted enols of esters, which easily react with various types of nucleophiles, Nu-H, under neutral conditions to give the corresponding acylated and silylated products in excellent yields only by evaporation of the generated volatile esters. Silyl ketene acetals can be easily synthesized by various simple procedures, whereas 1-alkoxyvinyl esters require an equimolar or catalytic amount of a mercury salt to synthesize them. This drawback prevented the advancement of the chemistry of 1-alkoxyvinyl esters. In 1993, we developed a useful synthetic method of 1-alkoxyvinyl esters using a small amount (0.5-1 mol %) of a ruthenium catalyst. Encouraged by this discovery, we subsequently developed various reactions and applied them to the synthesis of natural products. It is noteworthy that the stereoselective total synthesis of fredericamycin A was achieved by the combined use of these reactions. Macrocyclization was variously utilized for the synthesis of natural macrolides by two types of approaches: direct macrolactonization of alpha,omega-hydroxy acids or intermolecular esterification between an acid and alcohol followed by a ring-closure step. Additionally, several new reactions using 1-alkoxyvinyl esters or their analogs as key intermediates on the basis of our methods were recently reported. In this paper, we introduce our efforts from the synthesis of 1-alkoxyvinyl esters to the application such as natural product syntheses and recent advancements.
机译:烯酮缩醛衍生物,如1-烷氧基乙烯基酯和O-硅基烯酮缩醛,属于酯的O-取代烯醇类,其容易在中性条件下与各种类型的亲核试剂Nu-H反应,仅通过蒸发生成的挥发性酯,以优异的产率生成相应的酰化和硅基化产物。硅基烯酮缩醛可以通过各种简单的步骤轻松合成,而1-烷氧基乙烯基酯需要等摩尔或催化量的汞盐才能合成。这一缺点阻碍了1-烷氧基乙烯基酯化学的发展。1993年,我们开发了一种使用少量(0.5-1 mol%)钌催化剂合成1-烷氧基乙烯基酯的有效方法。受这一发现的鼓舞,我们随后开发了各种反应,并将其应用于天然产物的合成。值得注意的是,弗雷德里卡霉素A的立体选择性全合成是通过这些反应的结合实现的。大环化通过两种方法被广泛用于天然大环内酯类化合物的合成:α、ω-羟基酸的直接大环内酯化或酸和醇之间的分子间酯化,然后进行闭环步骤。此外,在我们的方法的基础上,最近报道了几种以1-烷氧基乙烯基酯或其类似物为关键中间体的新反应。本文介绍了我们从1-烷氧基乙烯基酯的合成到天然产物合成等应用的研究进展。

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