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具有全碳季碳中心的氮杂环丁烷:将接力催化与应变释放官能化相结合。

Azetidines with All-Carbon Quaternary Centers: Merging Relay Catalysis with Strain Release Functionalization.

作者信息

Hsu Che-Ming, Lin Heng-Bo, Hou Xin-Zhi, Tapales Radyn Vanessa Phaz P, Shih Chen-Kuei, Miñoza Shinje, Tsai Yu-Syuan, Tsai Zong-Nan, Chan Cheng-Lin, Liao Hsuan-Hung

机构信息

Department of Chemistry, National Sun Yat-sen University, Kaohsiung 80424, Taiwan (R.O.C.).

Green Hydrogen Research Center, National Sun Yat-sen University, Kaohsiung 80424, Taiwan (R.O.C.).

出版信息

J Am Chem Soc. 2023 Aug 30;145(34):19049-19059. doi: 10.1021/jacs.3c06710. Epub 2023 Aug 17.

Abstract

Given the importance and beneficial characteristics of decorated azetidines in medicinal chemistry, efficient strategies for their synthesis are highly sought after. Herein, we report a facile synthesis of the elusive all-carbon quaternary-center-bearing azetidines. By adopting a well-orchestrated polar-radical relay strategy, ring strain release of bench-stable benzoylated 1-azabicyclo[1.1.0]butane (ABB) can be harnessed for nickel-catalyzed Suzuki Csp-Csp cross-coupling with commercially available boronic acids in broad scope (>50 examples), excellent functional group tolerance, and gram-scale utility. Preliminary mechanistic studies provided insights into the underlying mechanism, wherein the ring opening of ABB with a catalytic quantity of bromide accounts for the conversion of ABB into a redox-active azetidine, which subsequently engages in the cross-coupling reaction through a radical pathway. The synergistic bromide and nickel catalysis could intriguingly be derived from a single nickel source (NiBr). Application of the method to modify natural products, biologically relevant molecules, and pharmaceuticals has been successfully achieved as well as the synthesis of melanocortin-1 receptor (MC-1R) agonist and vesicular acetylcholine transporter (VAChT) inhibitor analogues through bioisosteric replacements of piperidine with azetidine moieties, highlighting the potential of the method in drug optimization studies. Aside from the synthesis of azetidines, we demonstrate the ancillary utility of our nickel catalytic system toward the restricted Suzuki cross-coupling of tertiary alkyl bromides with aryl boronic acids to construct all-carbon quaternary centers.

摘要

鉴于修饰氮杂环丁烷在药物化学中的重要性和有益特性,人们一直在大力寻求其高效合成策略。在此,我们报道了一种简便合成难以捉摸的含全碳季中心氮杂环丁烷的方法。通过采用精心设计的极性-自由基接力策略,可利用稳定的苯甲酰化1-氮杂双环[1.1.0]丁烷(ABB)的环张力释放,实现镍催化的与市售硼酸的铃木Csp-Csp交叉偶联,该反应适用范围广(>50个实例)、官能团耐受性优异且具有克级规模实用性。初步机理研究深入了解了潜在机制,其中催化量的溴化物引发的ABB开环导致ABB转化为氧化还原活性氮杂环丁烷,随后通过自由基途径参与交叉偶联反应。有趣的是,协同的溴化物和镍催化可源自单一镍源(NiBr)。该方法已成功应用于修饰天然产物、生物相关分子和药物,以及通过用氮杂环丁烷部分生物电子等排取代哌啶来合成促黑素皮质素-1受体(MC-1R)激动剂和囊泡乙酰胆碱转运体(VAChT)抑制剂类似物,突出了该方法在药物优化研究中的潜力。除了氮杂环丁烷的合成,我们还展示了我们的镍催化体系在叔烷基溴与芳基硼酸受限的铃木交叉偶联以构建全碳季中心方面的辅助用途。

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