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基于序列明确的手性甘醇树枝状聚合物的糖质树突状囊泡揭示了对天然人凝集素变体的凝集的高活性和传感器容量。

Glycodendrimersomes from Sequence-Defined Janus Glycodendrimers Reveal High Activity and Sensor Capacity for the Agglutination by Natural Variants of Human Lectins.

机构信息

Roy & Diana Vagelos Laboratories, Department of Chemistry, University of Pennsylvania , Philadelphia, Pennsylvania 19104-6323, United States.

Department of Chemical and Biomolecular Engineering, University of Pennsylvania , Philadelphia, Pennsylvania 19104-6391, United States.

出版信息

J Am Chem Soc. 2015 Oct 21;137(41):13334-44. doi: 10.1021/jacs.5b08844. Epub 2015 Oct 7.

Abstract

A library of eight amphiphilic Janus glycodendrimers (Janus-GDs) presenting D-lactose (Lac) and a combination of Lac with up to eight methoxytriethoxy (3EO) units in a sequence-defined arrangement was synthesized via an iterative modular methodology. The length of the linker between Lac and the hydrophobic part of the Janus-GDs was also varied. Self-assembly by injection from THF solution into phosphate-buffered saline led to unilamellar, monodisperse glycodendrimersomes (GDSs) with dimensions predicted by Janus-GD concentration. These GDSs provided a toolbox to measure bioactivity profiles in agglutination assays with sugar-binding proteins (lectins). Three naturally occurring forms of the human adhesion/growth-regulatory lectin galectin-8, Gal-8S and Gal-8L, which differ by the length of linker connecting their two active domains, and a single amino acid mutant (F19Y), were used as probes to study activity and sensor capacity. Unpredictably, the sequence of Lac on the Janus-GDs was demonstrated to determine bioactivity, with the highest level revealed for a Janus-GD with six 3EO groups and one Lac. A further increase in Lac density was invariably accompanied by a substantial decrease in agglutination, whereas a decrease in Lac density resulted in similar or lower bioactivity and sensor capacity. Both changes in topology of Lac presentation of the GDSs and seemingly subtle alterations in protein structure resulted in different levels of bioactivity, demonstrating the presence of regulation on both GDS surface and lectin. These results illustrate the applicability of Janus-GDs to dissect structure-activity relationships between programmable cell surface models and human lectins in a highly sensitive and physiologically relevant manner.

摘要

通过迭代模块化方法合成了一个包含八个两亲性 Janus 糖树状大分子(Janus-GD)的文库,这些分子在序列定义的排列中呈现 D-乳糖(Lac)和多达八个甲氧基三乙氧基(3EO)单元的组合。Lac 与 Janus-GD 疏水部分之间的连接体的长度也有所不同。通过从 THF 溶液注入到磷酸盐缓冲盐水中进行自组装,导致具有由 Janus-GD 浓度预测的尺寸的单分子层、单分散的糖树状大分子囊泡(GDS)。这些 GDS 提供了一个工具包,用于在糖结合蛋白(凝集素)的凝集测定中测量生物活性谱。三种天然存在的人粘附/生长调节凝集素半乳糖凝集素-8 的形式,Gal-8S 和 Gal-8L,它们通过连接其两个活性结构域的连接体的长度不同,以及一个单一的氨基酸突变体(F19Y),被用作探针来研究活性和传感器容量。出人意料的是,Janus-GD 上 Lac 的序列被证明决定了生物活性,具有六个 3EO 基团和一个 Lac 的 Janus-GD 显示出最高水平。 Lac 密度的进一步增加总是伴随着凝集的大幅下降,而 Lac 密度的降低则导致相似或更低的生物活性和传感器容量。GDSs 中 Lac 呈现的拓扑结构的变化以及蛋白质结构的看似微小改变导致了不同水平的生物活性,表明 GDS 表面和凝集素都存在调节。这些结果说明了 Janus-GD 在以高度敏感和生理相关的方式剖析可编程细胞表面模型与人类凝集素之间的结构-活性关系方面的适用性。

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