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异二价偶氮苯糖簇的正交光开关:糖配体取向对细菌黏附的影响

Orthogonal photoswitching of heterobivalent azobenzene glycoclusters: the effect of glycoligand orientation in bacterial adhesion.

作者信息

Friedrich Leon M, Lindhorst Thisbe K

机构信息

Otto Diels Institute of Organic Chemistry, Christiana Albertina University of Kiel, Otto-Hahn-Platz 3-4, 24118 Kiel, Germany.

出版信息

Beilstein J Org Chem. 2025 Apr 8;21:736-748. doi: 10.3762/bjoc.21.57. eCollection 2025.

Abstract

Carbohydrate recognition is fundamental to a plethora of cellular processes and hence the elucidation of the structural determinants of the recognition process is a prerequisite for understanding and manipulating carbohydrate-protein interactions, such as in the inhibition of carbohydrate-specific bacterial adhesion. For receptor binding, glycoligands have to be properly oriented in three-dimensional space and additionally, secondary interactions exerted by multivalent glycoligands have an effect on affinity. A recently introduced orthogonally photoswitchable heterobivalent azobenzene Glc/Man glycocluster was utilized to examine these aspects of carbohydrate recognition in a bacterial adhesion-inhibition assay. The measured results were systematically contextualized employing new reference compounds such as the respective homobivalent Man/Man glycocluster. An in-depth study comprising the analysis of the photochromic properties and the potential as inhibitors of bacterial adhesion of the synthetic glycophotoswitches in their different isomeric states led to new insights into the role of ligand orientation in carbohydrate recognition. The experimental results were underpinned by molecular modeling.

摘要

碳水化合物识别对于众多细胞过程至关重要,因此阐明识别过程的结构决定因素是理解和操纵碳水化合物 - 蛋白质相互作用的先决条件,例如在抑制碳水化合物特异性细菌黏附中。对于受体结合,糖配体必须在三维空间中正确取向,此外,多价糖配体产生的二级相互作用会影响亲和力。最近引入的一种正交光可切换异二价偶氮苯葡萄糖/甘露糖糖簇被用于在细菌黏附抑制试验中研究碳水化合物识别的这些方面。使用新的参考化合物(如相应的同二价甘露糖/甘露糖糖簇)对测量结果进行系统的背景分析。一项深入研究包括对合成糖光开关在其不同异构体状态下的光致变色特性及其作为细菌黏附抑制剂的潜力进行分析,从而对配体取向在碳水化合物识别中的作用有了新的认识。实验结果得到了分子建模的支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/749c/11995721/ddb231da47c8/Beilstein_J_Org_Chem-21-736-g002.jpg

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