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首页> 外文期刊>Angewandte Chemie >Switching of Bacterial Adhesion to a Glycosylated Surface by Reversible Reorientation of the Carbohydrate Ligand
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Switching of Bacterial Adhesion to a Glycosylated Surface by Reversible Reorientation of the Carbohydrate Ligand

机译:通过碳水化合物配体的可逆重新定向将细菌粘附转换为糖基化表面

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摘要

The surface recognition in many biological systems is guided by the interaction of carbohydrate-specific proteins (lectins) with carbohydrate epitopes (ligands) located within the unordered glycoconjugate layer (glycocalyx) of cells. Thus, for recognition, the respective ligand has to reorient for a successful matching event. Herein, we present for the first time a model system, in which only the orientation of the ligand is altered in a controlled manner without changing the recognition quality of the ligand itself. The key for this orientational control is the embedding into an interfacial system and the use of a photoswitchable mechanical joint, such as azobenzene.
机译:在许多生物系统中,表面识别是由碳水化合物特异性蛋白(凝集素)与位于细胞无序糖缀合物层(糖萼)中的碳水化合物表位(配体)相互作用所指导的。因此,为了识别,相应的配体必须重新定向以成功进行匹配。在此,我们首次提出一种模型系统,其中仅以受控方式改变配体的方向,而不会改变配体本身的识别质量。这种定向控制的关键是嵌入到界面系统中,并使用可光转换的机械接头,例如偶氮苯。

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