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二苯基磷酰羟胺(DPPH)可实现后期S-亚胺化反应,以制备游离-NH的亚磺酰亚胺和磺酰亚胺。

Diphenylphosphinylhydroxylamine (DPPH) Affords Late-Stage S-imination to access free-NH Sulfilimines and Sulfoximines.

作者信息

Gunasekera Shanal, Pryyma Alla, Jung Jimin, Greenwood Rebekah, Patrick Brian O, Perrin David M

机构信息

Chemistry Department, University of British Columbia, 2036 Main Mall, V6T 1Z1, Vancouver, B.C., Canada.

出版信息

Angew Chem Int Ed Engl. 2024 Mar 22;63(13):e202314906. doi: 10.1002/anie.202314906. Epub 2024 Feb 19.

Abstract

Sulfilimines, as potential aza-isosteres of sulfoxides, are valued as building blocks, auxiliaries, ligands, bioconjugation handles, and as precursors to versatile S(VI) scaffolds including sulfoximines and sulfondiimines. Here, we report a thioether imination methodology that exploits O-(diphenylphosphinyl)hydroxyl amine (DPPH). Under mild, metal-free, and biomolecule-compatible conditions, DPPH enables late-stage S-imination on peptides, natural products, and a clinically trialled drug, and shows both excellent chemoselectivity and broad functional group tolerance. This methodological report is extended to an efficient and high-yielding one-pot reaction for accessing free-NH sulfoximines with diverse substrates including ones of potential clinical importance. In the presence of a rhodium catalyst, sulfoxides are S-iminated in higher yields to afford free-NH sulfoximines. S-imination was validated on an oxidatively delicate amatoxin to give sulfilimine and sulfoximine congeners. Interestingly, these new sulfilimine and sulfoximine-amatoxins show cytotoxicity. This method is further extended to create sulfilimine and sulfoximine-Fulvestrant and buthionine analogues.

摘要

亚磺酰亚胺作为亚砜潜在的氮杂电子等排体,被视为构建模块、助剂、配体、生物共轭手柄,以及包括亚磺酰亚胺和磺二亚胺在内的多种S(VI)支架的前体。在此,我们报道了一种利用O-(二苯基膦酰基)羟胺(DPPH)的硫醚亚胺化方法。在温和、无金属且与生物分子兼容的条件下,DPPH能够对肽、天然产物和一种临床试用药物进行后期S-亚胺化反应,并且表现出优异的化学选择性和广泛的官能团耐受性。该方法学报告扩展至一种高效高产的一锅法反应,可用于制备具有多种底物(包括具有潜在临床重要性的底物)的游离-NH亚磺酰亚胺。在铑催化剂存在下,亚砜以更高的产率进行S-亚胺化反应,得到游离-NH亚磺酰亚胺。在对氧化敏感的鹅膏毒素上进行S-亚胺化反应,得到亚磺酰亚胺和亚磺酰亚胺类似物。有趣的是,这些新的亚磺酰亚胺和亚磺酰亚胺-鹅膏毒素显示出细胞毒性。该方法进一步扩展用于制备亚磺酰亚胺和亚磺酰亚胺-氟维司群以及丁硫氨酸类似物。

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