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钌催化的烯烃-炔烃偶联反应。两性霉素P的全合成。

Ru-catalyzed alkene-alkyne coupling. Total synthesis of amphidinolide P.

作者信息

Trost Barry M, Papillon Julien P N, Nussbaumer Thomas

机构信息

Department of Chemistry, Stanford University, Stanford, California 94305-5080, USA.

出版信息

J Am Chem Soc. 2005 Dec 21;127(50):17921-37. doi: 10.1021/ja055967n.

Abstract

A coordinatively unsaturated ruthenium complex catalyzed the formation of a carbon-carbon bond between two judiciously chosen alkene and alkyne partners in good yield, and in a chemo- and regioselective fashion, despite the significant degree of unsaturation of the substrates. The resulting 1,4-diene forms the backbone of the cytotoxic marine natural product amphidinolide P. The alkene partner was rapidly assembled from (R)-glycidyl tosylate, which served as a linchpin in a one-flask, sequential three-components coupling process using vinyllithium and a vinyl cyanocuprate. The synthesis of the alkyne partner made use of an unusual anti-selective addition under chelation-control conditions of an allyltin reagent derived from tiglic acid. In addition, a remarkably E-selective E2 process using the azodicarboxylate-triphenylphosphine system is featured. Also featured is the first example of the use of a beta-lactone as a thermodynamic spring to effect macrolactonization. The oxetanone ring was thus used as a productive protecting group that increased the overall efficiency of this total synthesis. This work was also an opportunity to further probe the scope of the ruthenium-catalyzed alkene-alkyne coupling, in particular using enynes, and studies using various functionalized substrates are described.

摘要

一种配位不饱和钌配合物能以良好的产率,通过化学和区域选择性的方式,催化在两个经过精心选择的烯烃和炔烃底物之间形成碳 - 碳键,尽管底物的不饱和程度很高。所得的1,4 - 二烯构成了具有细胞毒性的海洋天然产物两性霉素P的骨架。烯烃底物由(R) - 对甲苯磺酸缩水甘油酯快速组装而成,在使用乙烯基锂和乙烯基氰化铜的单瓶连续三组分偶联过程中,它作为关键组分。炔烃底物的合成利用了在螯合控制条件下,由惕各酸衍生的烯丙基锡试剂进行的不寻常的反选择性加成。此外,还展示了使用偶氮二羧酸酯 - 三苯基膦体系进行的显著的E选择性E2反应。还展示了使用β - 内酯作为热力学弹簧来实现大环内酯化的首个实例。氧杂环丁酮环因此被用作一种有效的保护基,提高了该全合成的整体效率。这项工作也是进一步探索钌催化的烯烃 - 炔烃偶联范围的机会,特别是使用烯炔的情况,并描述了使用各种官能化底物的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e07/2533515/7b5510d21cef/nihms63200f1.jpg

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