单糖
葡萄糖转运蛋白
过剩1
果糖
化学
生物化学
膜转运
跨膜蛋白
生物物理学
碳水化合物
膜
生物
受体
内分泌学
胰岛素
作者
Hong‐Guen Lee,Avinash Dhamija,Chandan K. Das,Kyeng Min Park,Young‐Tae Chang,Lars V. Schäfer,Kimoon Kim
标识
DOI:10.1002/anie.202214326
摘要
Abstract Here we report synthetic monosaccharide channels built with shape‐persistent organic cages, porphyrin boxes ( PB s), that allow facile transmembrane transport of glucose and fructose through their windows. PB s show a much higher transport rate for glucose and fructose over disaccharides such as sucrose, as evidenced by intravesicular enzyme assays and molecular dynamics simulations. The transport rate can be modulated by changing the length of the alkyl chains decorating the cage windows. Insertion of a linear pillar ligand into the cavity of PB s blocks the monosaccharide transport. In vitro cell experiment shows that PB s transport glucose across the living‐cell membrane and enhance cell viability when the natural glucose transporter GLUT1 is blocked. Time‐dependent live‐cell imaging and MTT assays confirm the cyto‐compatibility of PB s. The monosaccharide‐selective transport ability of PB s is reminiscent of natural glucose transporters (GLUTs), which are crucial for numerous biological functions.
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