首页> 外文期刊>Journal of the American Chemical Society >Hierarchical Assembly of Model Cell Surfaces: Synthesis of Mucin Mimetic Polymers and Their Display on Supported Bilayers
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Hierarchical Assembly of Model Cell Surfaces: Synthesis of Mucin Mimetic Polymers and Their Display on Supported Bilayers

机译:模型细胞表面的层次组装:粘蛋白模拟聚合物的合成及其在支撑双层膜上的显示

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摘要

Molecular level analysis of cell-surface phenomena could benefit from model systems comprising structurally defined components. Here we present the first step toward bottom-up assembly of model cell surfaces-the synthesis of mucin mimetics and their incorporation into artificial membranes. Natural mucins are densely glycosylated O-linked glycoproteins that serve numerous functions on cell surfaces. Their large size and extensive glycosylation makes the synthesis of these biopolymers impractical. We designed synthetically tractable glycosylated polymers that possess rodlike extended conformations similar to natural mucins. The glycosylated polymers were end-functionalized with lipid groups and embedded into supported lipid bilayers where they interact with protein receptors in a structure-dependent manner. Furthermore, their dynamic behavior in synthetic membranes mirrored that of natural biomolecules. This system provides a unique framework with which to study the behavior of mucin-like macromolecules in a controlled, cell surface-mimetic environment.
机译:细胞表面现象的分子水平分析可以受益于包含结构定义成分的模型系统。在这里,我们介绍了朝下进行模型细胞表面组装的第一步-粘蛋白模拟物的合成及其将其掺入人工膜中。天然粘蛋白是在细胞表面具有多种功能的密集糖基化O联糖蛋白。它们的大尺寸和广泛的糖基化使得这些生物聚合物的合成不切实际。我们设计了具有类似于天然粘蛋白的棒状延伸构象的可合成合成的易于糖基化的聚合物。糖基化的聚合物被脂质基团末端官能化并嵌入支持的脂质双层中,在脂质双层中它们以结构依赖的方式与蛋白质受体相互作用。此外,它们在合成膜中的动态行为与天然生物分子的行为相似。该系统提供了一个独特的框架,可用来研究粘蛋白样大分子在受控的细胞表面模拟环境中的行为。

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