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表位检测色谱法:一种剖析植物细胞壁基质聚糖结构异质性和相互联系的方法。

Epitope detection chromatography: a method to dissect the structural heterogeneity and inter-connections of plant cell-wall matrix glycans.

作者信息

Cornuault Valérie, Manfield Iain W, Ralet Marie-Christine, Knox J Paul

机构信息

Faculty of Biological Sciences, Centre for Plant Sciences, University of Leeds, Leeds, LS2 9JT, UK.

出版信息

Plant J. 2014 May;78(4):715-22. doi: 10.1111/tpj.12504. Epub 2014 Apr 23.

Abstract

Plant cell walls are complex, multi-macromolecular assemblies of glycans and other molecules and their compositions and molecular architectures vary extensively. Even though the chemistry of cell-wall glycans is now well understood, it remains a challenge to understand the diversity of glycan configurations and interactions in muro, and how these relate to changes in the biological and mechanical properties of cell walls. Here we describe in detail a method called epitope detection chromatography analysis of cell-wall matrix glycan sub-populations and inter-connections. The method combines chromatographic separations with use of glycan-directed monoclonal antibodies as detection tools. The high discrimination capacity and high sensitivity for the detection of glycan structural features (epitopes) provided by use of established monoclonal antibodies allows the study of oligosaccharide motifs on sets of cell-wall glycans in small amounts of plant materials such as a single organ of Arabidopsis thaliana without the need for extensive purification procedures. We describe the use of epitope detection chromatography to assess the heterogeneity of xyloglucan and pectic rhamnogalacturonan I sub-populations and their modulation in A. thaliana organs.

摘要

植物细胞壁是聚糖和其他分子组成的复杂多大分子集合体,其组成和分子结构差异很大。尽管现在对细胞壁聚糖的化学性质已经有了很好的了解,但要理解细胞壁中聚糖构型和相互作用的多样性,以及它们如何与细胞壁生物学和机械性质的变化相关联,仍然是一个挑战。在这里,我们详细描述了一种称为细胞壁基质聚糖亚群和相互连接的表位检测色谱分析的方法。该方法将色谱分离与使用聚糖导向单克隆抗体作为检测工具相结合。使用已建立的单克隆抗体对聚糖结构特征(表位)进行检测时具有高分辨能力和高灵敏度,这使得我们能够在少量植物材料(如拟南芥的单个器官)中研究细胞壁聚糖上的寡糖基序,而无需进行广泛的纯化程序。我们描述了使用表位检测色谱来评估木葡聚糖和果胶鼠李半乳糖醛酸聚糖I亚群的异质性及其在拟南芥器官中的调控。

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