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酰胺键形成:超越活化与外消旋之间的困境。

Amide bond formation: beyond the dilemma between activation and racemisation.

机构信息

Molecular Catalyst Research Center, Chubu University, 1200 Matsumoto-cho, Kasugai, Aichi 487-8501, Japan.

出版信息

Chem Commun (Camb). 2021 Jun 29;57(52):6346-6359. doi: 10.1039/d1cc01795k.

Abstract

The development of methods for amide bond formation without recourse to typical condensation reagents has become an emerging research area and has been actively explored in the past quarter century. Inspired by the structure of vitamin B12, we have developed a metal-templated macrolactamisation that generates a new wave towards classical macrolactam synthesis. Further, distinct from the extensively used methods with condensation reagents or catalysts based on catalyst/reagent control our metal-catalysed methods based on substrate control can effectively address long-standing challenges such as racemisation in the field of peptide chemistry. In addition, the substrate-controlled strategy demonstrates the feasibility of "remote" peptide bond-forming reaction catalysed by a metal-ligand complex. Moreover, an originally designed hydrosilane/aminosilane system can avoid not only racemisation but also unnecessary waste production. This feature article documents our discovery and application of our original approaches in amide bond formation.

摘要

酰胺键形成方法的开发无需借助典型的缩合试剂已成为一个新兴的研究领域,并在过去的四分之一个世纪中得到了积极的探索。受维生素 B12 结构的启发,我们开发了一种金属模板的大环内酯化反应,为经典的大环内酯合成开辟了新途径。此外,与广泛使用的基于缩合试剂或催化剂的方法不同,我们基于金属催化剂控制底物的方法可以有效地解决肽化学领域中诸如消旋化等长期存在的挑战。此外,这种基于底物控制的策略证明了金属-配体配合物催化“远程”肽键形成反应的可行性。此外,最初设计的硅烷/氨基硅烷体系不仅可以避免消旋化,还可以避免不必要的废物产生。本文记录了我们在酰胺键形成方面的发现和应用。

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