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氮丙啶醛驱动的肽大环化反应的机理研究:亚氨基酐途径

Mechanistic investigation of aziridine aldehyde-driven peptide macrocyclization: the imidoanhydride pathway.

作者信息

Zaretsky Serge, Hickey Jennifer L, Tan Joanne, Pichugin Dmitry, St Denis Megan A, Ler Spencer, Chung Benjamin K W, Scully Conor C G, Yudin Andrei K

机构信息

Davenport Research Laboratories , Department of Chemistry , University of Toronto , 80 St. George Street , Toronto , Ontario M5S 3H6 , Canada . Email:

Encycle Therapeutics Inc. , 101 College Street, Suite 314 , Toronto , Ontario M5G 1L7 , Canada.

出版信息

Chem Sci. 2015 Oct 1;6(10):5446-5455. doi: 10.1039/c5sc01958c. Epub 2015 Jul 7.

Abstract

Aziridine aldehyde dimers, peptides, and isocyanides participate in a multicomponent reaction to yield peptide macrocycles. We have investigated the selectivity and kinetics of this process and performed a detailed analysis of its chemoselectivity. While the reactants encompass all of the elements of the traditional Ugi four-component condensation, there is a significant deviation from the previously proposed mechanism. Our results provide evidence for an imidoanhydride pathway in peptide macrocyclization and lend justification for the diastereoselectivity and high effective molarity observed in the reaction.

摘要

氮丙啶醛二聚体、肽和异腈参与多组分反应以生成肽大环化合物。我们研究了该过程的选择性和动力学,并对其化学选择性进行了详细分析。虽然反应物包含传统乌吉四组分缩合的所有元素,但与先前提出的机理存在显著偏差。我们的结果为肽大环化中的亚胺酸酐途径提供了证据,并为反应中观察到的非对映选择性和高效摩尔浓度提供了依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7dac/5949604/2d5384effc7d/c5sc01958c-f1.jpg

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