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A Two-Component Alkyne Metathesis Catalyst System with an Improved Substrate Scope and Functional Group Tolerance: Development and Applications to Natural Product Synthesis

机译:具有改进的底物范围和官能团耐受性的双组分炔烃复分解催化剂体系:天然产物合成的开发和应用

摘要

Although molybdenum alkylidyne complexes such as 1 endowed with triarylsilanolate ligands are excellent catalysts for alkyne metathesis, they can encounter limitations when (multiple) protic sites are present in a given substrate and/or when forcing conditions are necessary. In such cases, a catalyst formed in situ upon mixing of the trisamidomolybenum alkylidyne complex 3 and the readily available trisilanol derivatives 8 or 11 shows significantly better performance. This two-component system worked well for a series of model compounds comprising primary, secondary or phenolic -OH groups, as well as for a set of challenging (bis)propargylic substrates. Its remarkable efficiency is also evident from applications to the total syntheses of manshurolide, a highly strained sesquiterpene lactone with kinase inhibitory activity, and the structurally demanding immunosuppressive cyclodiyne ivorenolide A; in either case, the standard catalyst 1 largely failed to effect the critical macrocyclization, whereas the two-component system was fully operative. A study directed toward the quinolizidine alkaloid lythrancepine I features yet another instructive example, in that a triyne substrate was metathesized with the help of 3/11 such that two of the triple bonds participated in ring closure, while the third one passed uncompromised. As a spin-off of this project, a much improved ruthenium catalyst for the redox isomerization of propargyl alcohols to the corresponding enones was developed.
机译:尽管具有三芳基硅烷醇酸酯配体的钼亚烷基络合物(例如1)是炔烃复分解的极佳催化剂,但当给定底物中存在(多个)质子位点和/或需要施加强制条件时,它们可能会遇到限制。在这种情况下,将三sa基钼基亚烷基络合物3和容易获得的三硅烷醇衍生物8或11混合就地形成的催化剂表现出明显更好的性能。该两组分系统对一系列包含伯,仲或酚-OH基团的模型化合物以及一组具有挑战性的(双)炔丙基底物均适用。从应用到整个合成中,manshurolide,具有激酶抑制活性的高应变倍半萜内酯和结构上要求严格的免疫抑制性环二炔邻苯二酚A的应用,也可以明显看出其出色的效率。在这两种情况下,标准催化剂1在很大程度上都无法实现关键的大环化反应,而两组分系统则完全起作用。一项针对喹喔啉生物碱类山thr碱I的研究具有另一个说明性的例子,其中三炔底物在3/11的帮助下进行了复分解,使得三个键中的两个参与了环的闭合,而第三个键则不受影响。作为该项目的衍生产品,开发了一种大大改进的钌催化剂,用于将炔丙醇氧化还原为相应的烯酮。

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