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利用环 closing metathesis 对基于 P2 苯甘氨酸的 HCV NS3 蛋白酶抑制剂进行 P2-P1' 大环化。

P2-P1' macrocyclization of P2 phenylglycine based HCV NS3 protease inhibitors using ring-closing metathesis.

机构信息

Department of Medicinal Chemistry, Organic Pharmaceutical Chemistry, Uppsala University, BMC, Box 574, SE-751 23 Uppsala, Sweden.

出版信息

Bioorg Med Chem. 2011 Aug 15;19(16):4917-27. doi: 10.1016/j.bmc.2011.06.064. Epub 2011 Jun 28.

Abstract

Macrocyclization is a commonly used strategy to preorganize HCV NS3 protease inhibitors in their bioactive conformation. Moreover, macrocyclization generally leads to greater stability and improved pharmacokinetic properties. In HCV NS3 protease inhibitors, it has been shown to be beneficial to include a vinylated phenylglycine in the P2 position in combination with alkenylic P1' substituents. A series of 14-, 15- and 16-membered macrocyclic HCV NS3 protease inhibitors with the linker connecting the P2 phenylglycine and the alkenylic P1' were synthesized by ring-closing metathesis, using both microwave and conventional heating. Besides formation of the expected macrocycles in cis and trans configuration as major products, both ring-contracted and double-bond migrated isomers were obtained, in particular during formation of the smaller rings (14- and 15-membered rings). All inhibitors had K(i)-values in the nanomolar range, but only one inhibitor type was improved by rigidification. The loss in inhibitory effect can be attributed to a disruption of the beneficial π-π interaction between the P2 fragment and H57, which proved to be especially deleterious for the d-phenylglycine epimers.

摘要

大环化是一种常用的策略,用于将 HCV NS3 蛋白酶抑制剂预组织成它们的生物活性构象。此外,大环化通常会导致更大的稳定性和改善的药代动力学性质。在 HCV NS3 蛋白酶抑制剂中,已经表明在 P2 位置包含乙烯基苯甘氨酸与烯丙基 P1'取代基结合是有益的。通过闭环复分解反应,使用微波和常规加热,合成了一系列具有连接 P2 苯甘氨酸和烯丙基 P1'的连接子的 14、15 和 16 元大环 HCV NS3 蛋白酶抑制剂。除了作为主要产物形成预期的顺式和反式构型的大环外,还获得了环收缩和双键迁移异构体,特别是在形成较小环(14 和 15 元环)时。所有抑制剂的 K(i)值均在纳摩尔范围内,但只有一种抑制剂类型通过刚性化得到改善。抑制效果的丧失可归因于 P2 片段和 H57 之间有益的 π-π 相互作用的破坏,这对于 d-苯甘氨酸差向异构体尤其有害。

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