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通过蛋白质纳米孔对糖胺聚糖寡糖和多糖进行全面的结构分配。

Comprehensive structural assignment of glycosaminoglycan oligo- and polysaccharides by protein nanopore.

机构信息

Université Paris-Saclay, Univ Evry, CNRS, LAMBE, Evry-Courcouronnes, France.

CNRS, CERMAV, University Grenoble Alpes, Grenoble, France.

出版信息

Nat Commun. 2022 Aug 30;13(1):5113. doi: 10.1038/s41467-022-32800-4.

Abstract

Glycosaminoglycans are highly anionic functional polysaccharides with information content in their structure that plays a major role in the communication between the cell and the extracellular environment. The study presented here reports the label-free detection and analysis of glycosaminoglycan molecules at the single molecule level using sensing by biological nanopore, thus addressing the need to decipher structural information in oligo- and polysaccharide sequences, which remains a major challenge for glycoscience. We demonstrate that a wild-type aerolysin nanopore can detect and characterize glycosaminoglycan oligosaccharides with various sulfate patterns, osidic bonds and epimers of uronic acid residues. Size discrimination of tetra- to icosasaccharides from heparin, chondroitin sulfate and dermatan sulfate was investigated and we show that different contents and distributions of sulfate groups can be detected. Remarkably, differences in α/β anomerization and 1,4/1,3 osidic linkages can also be detected in heparosan and hyaluronic acid, as well as the subtle difference between the glucuronic/iduronic epimers in chondroitin and dermatan sulfate. Although, at this stage, discrimination of each of the constituent units of GAGs is not yet achieved at the single-molecule level, the resolution reached in this study is an essential step toward this ultimate goal.

摘要

糖胺聚糖是高度带负电荷的功能多糖,其结构中的信息含量在细胞与细胞外环境的交流中起着主要作用。本研究报告了使用生物纳米孔的无标记检测和分析糖胺聚糖分子在单分子水平上的方法,从而解决了在寡糖和多糖序列中破译结构信息的需求,这仍然是糖科学的主要挑战。我们证明,野生型 Aerolysin 纳米孔可以检测和表征具有各种硫酸盐模式、糖昔键和糖醛酸残基差向异构体的糖胺聚糖低聚糖。研究了肝素、硫酸软骨素和硫酸皮肤素的四到二十糖的大小区分,并表明可以检测到不同含量和分布的硫酸盐基团。值得注意的是,在肝素聚糖和透明质酸中,也可以检测到 α/β差向异构和 1,4/1,3 糖苷键的差异,以及硫酸软骨素和硫酸皮肤素中葡萄糖醛酸/艾杜糖醛酸差向异构体的细微差异。尽管在单分子水平上还不能区分 GAGs 的每个组成单元,但本研究中达到的分辨率是实现这一最终目标的重要一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/51a9/9427770/d74243444c92/41467_2022_32800_Fig1_HTML.jpg

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