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基于有机磷手性节点控制的氢键阴离子笼的立体选择性组装。

Stereoselective Assembly of Hydrogen-Bonded Anionic Cages Dictated by Organophosphate-Based Chiral Nodes.

机构信息

Xi'an Key Laboratory of Textile Chemical Engineering Auxiliaries, School of Emvironmental and Chemical Engineering, Xi'an Polytechnic University, Xi'an, 710600, China.

Key Laboratory of Synthetic and Natural Functional Molecule of the Ministry of Education, Xi'an Key Laboratory of Functional Supramolecular Structure and Materials, College of Chemistry and Materials Science, Northwest University, Xi'an, 710069, China.

出版信息

Angew Chem Int Ed Engl. 2023 Mar 13;62(12):e202300470. doi: 10.1002/anie.202300470. Epub 2023 Feb 14.

Abstract

Inspired by the signal transduction function of organophosphates in biological systems, bioactive organophosphates were utilized for the first time as chiral nodes to dictate the stereoselective assembly of hydrogen-bonded anionic cages. Phosphonomycin (antibiotics), tenofovir (antivirals), adenosine monophosphate (natural product, AMP) and clindamycin phosphate (antibiotics) were assembled with an achiral bis-monourea ligand, thereby leading to the stereoselective formation of quadruple or triple helicates. The extent of the stereoselectivity could be enhanced by either lowering the temperature or adding stronger-binding cations as templates. With the chiral anionic cages as the host, some enantioselectivity was achieved when binding chiral quaternary ammonium cations.

摘要

受生物体系中有机磷酸酯的信号转导功能的启发,生物活性有机磷酸酯首次被用作手性节点,以控制氢键阴离子笼的立体选择性组装。磷霉素(抗生素)、替诺福韦(抗病毒药)、单磷酸腺苷(天然产物,AMP)和克林霉素磷酸酯(抗生素)与非手性双单脲配体组装,从而立体选择性地形成四重或三重螺旋体。通过降低温度或添加更强结合的阳离子作为模板,可以增强立体选择性的程度。当手性阴离子笼作为主体时,与手性季铵阳离子结合时可以实现一定的对映选择性。

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