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四肽催化剂介导的对映选择性磺酰化反应。

Enantioselective sulfonylation reactions mediated by a tetrapeptide catalyst.

机构信息

Department of Chemistry, Yale University, P.O. Box 208107, New Haven, CT 06520-8107, USA.

出版信息

Nat Chem. 2009 Nov;1(8):630-4. doi: 10.1038/nchem.410.

Abstract

While Nature excels at performing selective modifications of complex polyfunctional molecules through the use of tailoring enzymes, synthetic chemistry has lagged behind in this regard. In prior work, we have applied a biomimetic approach to this problem, developing small peptides to achieve various group transfer reactions on polyol substrates with high enantio- or regioselectivity. The utility of sulfonates as synthetic building blocks and the scarcity of direct, selective methods for their preparation prompted our investigation into this area. In this article we report the development of a pi-methyl histidine-based tetrameric peptide that effects the desymmetrization of meso-1,3-diols through enantioselective (mono)sulfonylation. The catalyst exhibits structural similarities to another catalyst found to be effective in orthogonal group transfers, but results in modification of the enantiotopic alcohol. The practical and mechanistic implications of this discovery may extend beyond synthetic considerations and provide analogies to the diverse roles of histidine in enzyme active sites.

摘要

虽然自然界擅长通过使用修饰酶对复杂多功能分子进行选择性修饰,但在这方面,合成化学却落后了。在之前的工作中,我们已经将仿生方法应用于这个问题,开发了小肽,以在多醇底物上实现各种基团转移反应,具有高对映选择性或区域选择性。磺酸盐作为合成砌块的实用性以及直接、选择性制备它们的方法的缺乏促使我们对此领域进行了研究。在本文中,我们报告了一种基于 pi-甲基组氨酸的四聚体肽的开发,该肽通过对映选择性(单)磺化作用使内消旋 1,3-二醇去对称化。该催化剂与另一种在正交基团转移中被证明有效的催化剂具有结构相似性,但导致对映异位醇的修饰。这一发现的实际和机械意义可能不仅限于合成方面,并为组氨酸在酶活性位点中的多种作用提供了类比。

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