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Total synthesis of laulimalide: Synthesis of the northern and southern fragments

机译:Laulimalide的全合成:北部和南部片段的合成

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摘要

The first stage in the development of a synthetic route for the total synthesis of laulimalide (1) is described. Our retrosynthetic analysis envisioned a novel macrocyclization route to the natural product by using a Ru-catalyzed alkene-alkyne coupling. This would be preceded by an esterification of the C19 hydroxyl group, joining together two equally sized synthons, the northern fragment 7 and the southern fragment 8. Our first generation approach to the northern fragment entailed a key sequential Ru/Pd coupling sequence to assemble the dihydropyran. The key reactions proceeded smoothly, but the inability to achieve a key olefin migration led to the development of an alternative route based on an asymmetric dinuclear Zn-catalyzed aldol reaction of a hydroxyl acylpyrrole. This key reaction led to the desired diol adduct 66 with excellent syn/anti selectivity (10:1), and allowed for the successful completion of the northern fragment 7. The key step for the synthesis of the southern fragment was a chemoselective Rh-catalyzed cycloisomerization reaction to form the dihydropyran ring from a diyne precursor. This reaction proved to be selective for the formation of a six-membered ring, over a seven. The use of an electron-deficient bidentate phosphine allowed for the reaction to proceed with a reduced catalyst loading. Making the pieces: The synthesis of two equal-sized fragments of laulimalide is described (see scheme). A key Rh-catalyzed cycloisomerization reaction allowed for an efficient synthesis of the endocyclic dihydropyran and a stereoselective acylpyrrole Zn-aldol reaction allowed for the formation of the syn-diol.
机译:描述了全合成劳来那肽(1)的合成路线开发的第一阶段。我们的逆合成分析通过使用Ru催化的烯烃-炔烃偶联,设想了一条通往天然产物的新型大环化途径。在此之前将C19羟基酯化,将两个相等大小的合成子,北部片段7和南部片段8连接在一起。我们对北部片段的第一代方法需要关键的连续Ru / Pd偶联序列来组装二氢吡喃。关键反应进行得很顺利,但是由于无法实现关键烯烃的迁移,导致开发了基于不对称双核锌催化羟酰基吡咯的羟醛反应的替代途径。该关键反应产生具有优异的顺/反选择性(10:1)的所需二醇加合物66,并成功完成了北部片段7。合成南部片段的关键步骤是化学选择性的Rh催化环异构化反应,由二炔前体形成二氢吡喃环。事实证明,该反应对形成七元以上的六元环具有选择性。使用缺电子的二齿膦可以使反应在降低的催化剂负载下进行。制作碎片:描述了两个相同大小的laulimalide片段的合成(请参见方案)。关键的Rh催化的环异构化反应可有效合成内环二氢吡喃,而立体选择性酰基吡咯Zn-醛醇缩合反应则可形成顺式二醇。

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