Asymmetric synthesis of chiral β-alkynyl carbonyl and sulfonyl derivatives: Via sequential palladium and copper catalysis

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Abstract

We present a full account detailing the development of a sequential catalysis strategy for the synthesis of chiral β-alkynyl carbonyl and sulfonyl derivatives. A palladium-catalyzed cross coupling of terminal alkyne donors with acetylenic ester, ketone, and sulfone acceptors generates stereodefined enynes in high yield. These compounds are engaged in an unprecedented, regio- and enantioselective copper-catalyzed conjugate reduction. The process exhibits a high functional group tolerance, and this enables the synthesis of a broad range of chiral products from simple, readily available alkyne precursors. The utility of the method is demonstrated through the elaboration of the chiral β-alkynyl products into a variety of different molecular scaffolds. Its value in complex molecule synthesis is further validated through a concise, enantioselective synthesis of AMG 837, a potent GPR40 receptor agonist.

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Trost, B. M., Masters, J. T., Taft, B. R., & Lumb, J. P. (2016). Asymmetric synthesis of chiral β-alkynyl carbonyl and sulfonyl derivatives: Via sequential palladium and copper catalysis. Chemical Science, 7(9), 6217–6231. https://doi.org/10.1039/c6sc01724j

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