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表面自发逐步去质子化驱动超分子膜向囊泡的转变。

Transformation of Supramolecular Membranes to Vesicles Driven by Spontaneous Gradual Deprotonation on Membrane Surfaces.

机构信息

KU-KIST Graduate School of Converging Science and Technology, Korea University, Seoul 02841, Republic of Korea.

Department of Chemistry, Fudan University, Shanghai 200438, China.

出版信息

J Am Chem Soc. 2022 Sep 28;144(38):17341-17345. doi: 10.1021/jacs.2c06941. Epub 2022 Sep 13.

Abstract

The various proteins and asymmetric lipid bilayers present in cell membranes form curvatures, resulting in structural transformations to generate vesicles. Fission and fusion processes between vesicles and cell membranes are reversible in living organisms. Although the transformation of a two-dimensional membrane to a three-dimensional vesicle structure is a common natural phenomenon, the lack of a detailed understanding at the molecular level limits the development of synthetic systems for functional materials. Herein, we report a supramolecular membrane system through donor-acceptor interactions using a π-deficient acceptor and π-rich donor as building blocks. The reduced electrostatic repulsion between ammonium cations and the spontaneously deprotonated neutral amino group induced anisotropic membrane curvature, resulting in membrane fission to form vesicles with a detailed understanding at the molecular level. Furthermore, the reversible transformation of vesicles to membranes upon changing the pH provides a novel synthetic system exhibiting both fission and fusion processes.

摘要

细胞膜中存在的各种蛋白质和不对称脂质双层形成曲率,导致结构发生转变以生成囊泡。囊泡与细胞膜之间的裂变和融合过程在活生物体中是可逆的。尽管二维膜向三维囊泡结构的转变是一种常见的自然现象,但由于在分子水平上缺乏详细的了解,限制了功能性材料的合成系统的发展。在此,我们报告了一种通过供体-受体相互作用形成的超分子膜系统,使用缺π的受体和富π的供体作为构筑块。铵阳离子之间的静电排斥减少以及中性氨基基团的自发去质子化诱导各向异性的膜曲率,导致膜裂变,形成具有分子水平详细信息的囊泡。此外,通过改变 pH 值使囊泡可逆地转化为膜,为展示裂变和融合过程的新型合成系统提供了可能。

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