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合成多样噻唑烷的方法——一锅微波辅助伸缩策略及其与生物分子的相互作用。

Synthetic access to diverse thiazetidines a one-pot microwave assisted telescopic approach and their interaction with biomolecules.

机构信息

Department of Chemistry, School of Advanced Sciences, Vellore Institute of Technology, Vellore 632014, India.

Department of Chemistry, College of Science, King Khalid University, P.O. Box 9004, Abha 61413, Saudi Arabia.

出版信息

Org Biomol Chem. 2024 Apr 24;22(16):3249-3261. doi: 10.1039/d4ob00075g.

Abstract

A one-pot microwave assisted telescopic approach is reported for the chemo-selective synthesis of substituted 1,3-thiazetidines using readily available 2-aminopyridines/pyrazines/pyrimidine, substituted isothiocyanates and 1,2-dihalomethanes. The procedure involves thiourea formation from 2-aminopyridines/pyrazines/pyrimidine with the substituted isothiocyanates followed by a base catalysed nucleophilic attack of the CS bond on the 1,2-dihalomethane. Subsequently, a cyclization reaction occurs to yield substituted 1,3-thiazetidines. These four membered strained ring systems are reported to possess broad substrate scope with high functional group tolerance. The above synthetic sequence for the formation of four membered heterocycles is proven to be a modular and straightforward approach. Further the mechanistic pathway for the formation of 1,3-thiazetidines was supported by computational evaluations and X-ray crystallography analyses. The relevance of these thiazetidines in biological applications is evaluated by studying their ability to bind bio-macromolecules like proteins and nucleic acids.

摘要

本文报道了一种通过微波辅助一锅法,以易得的 2-氨基吡啶/吡嗪/嘧啶、取代异硫氰酸酯和 1,2-二卤代甲烷,选择性合成取代 1,3-噻嗪的方法。该方法涉及 2-氨基吡啶/吡嗪/嘧啶与取代异硫氰酸酯反应生成硫脲,然后在碱催化下,C-S 键对 1,2-二卤代甲烷进行亲核进攻。随后,发生环化反应生成取代的 1,3-噻嗪。这些四元张力环体系具有广泛的底物范围和高官能团容忍度。该四元杂环的合成序列被证明是一种模块化和直接的方法。进一步的计算评估和 X 射线晶体学分析支持了 1,3-噻嗪形成的反应机理。通过研究它们与生物大分子如蛋白质和核酸结合的能力,评估了这些噻嗪在生物应用中的相关性。

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