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DNA 编程脂质纳米反应器通过融合亚皮升级别的水性隔室合成碳水化合物模拟物。

DNA-Programmed Lipid Nanoreactors for Synthesis of Carbohydrate Mimetics by Fusion of Aqueous Sub-attoliter Compartments.

机构信息

Department of Physics, Chemistry and Pharmacy, University of Southern Denmark, Campusvej 55, 5230 Odense M, Denmark.

出版信息

J Am Chem Soc. 2023 Sep 13;145(36):19633-19641. doi: 10.1021/jacs.3c04093. Epub 2023 Aug 24.

Abstract

Lipid nanoreactors are biomimetic reaction vessels (nanoreactors) that can host aqueous or membrane-associated chemical and enzymatic reactions. Nanoreactors provide ultra-miniaturization from atto- to zeptoliter volumes per reaction vessel with the major challenge of encoding and spatio-temporal control over reactions at the individual nanoreactor or population level, thereby controlling volumes several orders of magnitude below advanced microfluidic devices. We present DNA-programmed lipid nanoreactors (PLNs) functionalized with lipidated oligonucleotides (LiNAs) that allow programming and encoding of nanoreactor interactions by controlled membrane fusion, exemplified for a set of carbohydrate mimetics with mono- to hexasaccharide azide building blocks connected by click-chemistry. Programmed reactions are initiated by fusion of distinct populations of nanoreactors with individually encapsulated building blocks. A focused library of triazole-linked carbohydrate-Cy5 conjugates formed by strain-promoted azide-alkyne cycloadditions demonstrated LiNA-programmed chemistry, including two-step reaction schemes. The PLN method is developed toward a robust platform for synthesis in confined space employing fully programmable nanoreactors, applicable to multistep synthesis for the generation of combinatorial libraries with subsequent analysis of the molecules formed, based on the addressability of the lipid nanoreactors.

摘要

脂质纳米反应器是仿生反应容器(纳米反应器),可以容纳水相或膜相关的化学和酶反应。纳米反应器提供了从阿特到泽普托升每反应容器的超微小型化,主要挑战是在单个纳米反应器或群体水平上对反应进行编码和时空控制,从而控制体积比先进的微流控装置小几个数量级。我们提出了 DNA 编程的脂质纳米反应器 (PLN),其功能化有脂质化的寡核苷酸 (LiNAs),允许通过受控的膜融合对纳米反应器相互作用进行编程和编码,以一组碳水化合物类似物为例,这些类似物由通过点击化学连接的单糖至六糖叠氮基构建块组成。通过融合具有单独封装构建块的不同群体的纳米反应器来启动编程反应。通过应变促进的叠氮化物-炔烃环加成形成的一系列三唑键合的碳水化合物-Cy5 缀合物的聚焦文库证明了 LiNA 编程化学,包括两步反应方案。PLN 方法朝着在受限空间中使用完全可编程的纳米反应器进行合成的稳健平台发展,适用于多步合成,以生成组合文库,随后根据脂质纳米反应器的可寻址性对形成的分子进行分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3950/10510321/8d5f989f33e1/ja3c04093_0002.jpg

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