Perez Lark J, Shimp Heidi L, Micalizio Glenn C
Department of Chemistry, Yale University, New Haven, Connecticut 06520, USA.
J Org Chem. 2009 Oct 2;74(19):7211-9. doi: 10.1021/jo901451c.
A highly selective convergent coupling reaction is described between alkynes for the synthesis of stereodefined trisubstituted (E,E)-1,3-dienes-structural motifs commonly found embedded in the skeletons of bioactive polyketide-derived natural products. While numerous multistep processes for the synthesis of this stereodefined functional group exist, the current method represents a significant advance as it does not require stereodefined olefinic coupling partners (vinyl halide or vinyl organometallic); it proceeds by a single convergent C-C bond-forming event (avoiding multistep methods based on carbonyl olefination) and is tolerant of a diverse array of functional groups including free hydroxyls. Through a systematic study of titanium-mediated reductive cross-coupling reactions of internal alkynes with terminal alkynes, a fragment coupling reaction of great utility in natural product synthesis has emerged. Here, use of a proximal hydroxy group to control regioselection in the functionalization of a preformed titanacyclopropene has led to the establishment of a highly selective bimolecular coupling process, where C-C bond formation occurs in concert with the establishment of two stereodefined alkenes. Compared to the body of literature known for related metal-mediated coupling reactions, the current work defines a powerful advance, achieving site-selective bimolecular C-C bond formation without the need for using TMS-alkynes or conjugated alkynes. Overall, complex 1,3-dienes relevant for the synthesis of polyketide-derived natural products of varying stereochemistry were prepared with typically >or=20:1 selectivity, defining the important role of an alkoxide directing group located delta to preformed titanacyclopropenes.
本文描述了一种高选择性的炔烃间收敛偶联反应,用于合成具有立体构型的三取代(E,E)-1,3-二烯结构基序,这种结构基序常见于生物活性聚酮衍生天然产物的骨架中。虽然存在许多用于合成这种具有立体构型官能团的多步方法,但目前的方法是一个重大进展,因为它不需要具有立体构型的烯烃偶联伙伴(卤化乙烯或乙烯基有机金属化合物);它通过单一的收敛性碳-碳键形成事件进行(避免基于羰基烯化的多步方法),并且能耐受包括游离羟基在内的多种官能团。通过对钛介导的内炔与端炔的还原交叉偶联反应进行系统研究,一种在天然产物合成中具有重要用途的片段偶联反应应运而生。在此,利用近端羟基控制预制钛杂环丙烯官能化中的区域选择性,导致建立了一种高选择性的双分子偶联过程,其中碳-碳键的形成与两个具有立体构型的烯烃的形成协同发生。与已知的相关金属介导偶联反应的文献相比,目前的工作取得了重大进展,实现了位点选择性双分子碳-碳键形成,而无需使用TMS-炔烃或共轭炔烃。总体而言,以通常大于或等于20:1的选择性制备了与不同立体化学的聚酮衍生天然产物合成相关的复杂1,3-二烯,确定了位于预制钛杂环丙烯δ位的醇盐导向基团的重要作用。