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Solid-state NMR investigations of cellulose structure and interactions with matrix polysaccharides in plant primary cell walls

机译:固态NMR研究植物原代细胞壁中纤维素结构及其与基质多糖的相互作用

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This article discusses the use of multidimensional solid-state NMR to site-specifically detect polysaccharide interactions and the chain numbers of cellulose microfibrils in near-native primary cell wall samples.Until recently, the 3D architecture of plant cell walls was poorly understood due to the lack of high-resolution techniques for characterizing the molecular structure, dynamics, and intermolecular interactions of the wall polysaccharides in these insoluble biomolecular mixtures. We introduced multidimensional solid-state NMR (SSNMR) spectroscopy, coupled with C-13 labelling of whole plants, to determine the spatial arrangements of macromolecules in near-native plant cell walls. Here we review key evidence from 2D and 3D correlation NMR spectra that show relatively few cellulose-hemicellulose cross peaks but many cellulose-pectin cross peaks, indicating that cellulose microfibrils are not extensively coated by hemicellulose and all three major polysaccharides exist in a single network rather than two separate networks as previously proposed. The number of glucan chains in the primary-wall cellulose microfibrils has been under active debate recently. We show detailed analysis of quantitative C-13 SSNMR spectra of cellulose in various wild-type (WT) and mutant Arabidopsis and Brachypodium primary cell walls, which consistently indicate that primary-wall cellulose microfibrils contain at least 24 glucan chains.
机译:本文讨论了使用多维固态NMR来定点检测近原代原代细胞壁样品中的多糖相互作用和纤维素微纤维的链数。直到最近,由于对细胞壁的3D结构了解甚少。缺乏用于表征这些不溶性生物分子混合物中壁多糖的分子结构,动力学和分子间相互作用的高分辨率技术。我们引入了多维固态NMR(SSNMR)光谱,并结合了整个植物的C-13标记,以确定大分子在近本机植物细胞壁中的空间排列。在这里,我们从2D和3D相关NMR光谱中回顾了关键证据,这些证据显示相对较少的纤维素-半纤维素交叉峰,但有许多纤维素-果胶交叉峰,这表明纤维素微纤维并未被半纤维素广泛覆盖,并且所有三种主要多糖都存在于一个网络中而不是先前提议的两个独立网络。初级壁纤维素微原纤维中葡聚糖链的数量最近一直处于活跃的争论之中。我们显示详细分析的各种野生型(WT)和突变拟南芥和Brachypodium初级细胞壁中的纤维素的定量C-13 SSNMR光谱,这始终表明初级壁纤维素微纤维包含至少24个葡聚糖链。

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