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Asymmetric synthesis of an N-acylpyrrolidine for inhibition of HCV polymerase

机译:N-酰基吡咯烷的不对称合成抑制HCV聚合酶

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A practical asymmetric synthesis of a highly substituted N-acylpyrrolidine on multi-kilogram scale is described. The key step in the construction of the three stereocenters is a [3+2] cycloaddition of methyl acrylate and an imino ester prepared from L-leucine t-butyl ester hydrochloride and 2-thiazolecarboxaldehyde. The cycloaddition features novel asymmetric catalysis via a complex of silver acetate and a cinchona alkaloid, particularly hydroquinine, with complete diastereomeric control and up to 87% enantiomeric control. The alkaloid serves as a ligand as well as a base for the formation of the azomethine ylide or 1,3-dipole. Experiments have shown that the hydroxyl group of hydroquinine is a critical element for the enantioselectivities observed. The cycloaddition methodology is also applicable to methylvinyl ketone, providing access to either alpha- or beta-epimers of 4-acetylpyrrolidine depending on the reaction conditions utilized. The synthesis also highlights an efficient N-acylation, selective O- versus N-methylation, and a unique ester reduction with NaBH4-MeOH catalyzed by NaB(OAc)(3)H that not only achieves excellent chemoselectivity but also avoids formation of the undesired but thermodynamically favored epimer. The highly functionalized target is synthesized in seven linear steps from L-leucine t-butyl ester hydrochloride with all three isolated intermediates being highly crystalline.
机译:描述了一种实用的不对称合成方法,可以合成多公斤级的高度取代的N-酰基吡咯烷。构建这三个立体中心的关键步骤是[3 + 2]丙烯酸甲酯和亚氨基酯的环加成反应,该亚氨基酯是由L-亮氨酸叔丁基酯盐酸盐和2-噻唑羧醛制得的。通过乙酸银和金鸡纳生物碱(特别是对苯二酚)的络合物,具有完全的非对映异构体控制和高达87%的对映体控制,可以实现新颖的不对称催化。生物碱既用作配体又用作形成甲亚胺叶立德或1,3-偶极的基础。实验表明,对苯二酚的羟基是观察到的对映选择性的关键元素。环加成方法也适用于甲基乙烯基酮,根据所使用的反应条件,可以接触到4-乙酰基吡咯烷的α-或β-受体。该合成还突出显示了有效的N-酰化,选择性的O-相对于N-甲基化,以及由NaB(OAc)(3)H催化的NaBH4-MeOH独特的酯还原,不仅实现了出色的化学选择性,而且避免了不希望的形成但在热力学上偏爱差向异构体。从L-亮氨酸叔丁酯盐酸盐以七个线性步骤合成高度官能化的靶标,所有三个分离的中间体均为高度结晶。

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