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首页> 外文期刊>SLAS Technology >Locating Methyl-Etherified and Methyl-Esterified Uronic Acids in the Plant Cell Wall Pectic Polysaccharide Rhamnogalacturonan II
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Locating Methyl-Etherified and Methyl-Esterified Uronic Acids in the Plant Cell Wall Pectic Polysaccharide Rhamnogalacturonan II

机译:在植物细胞壁壁果胶多糖中定位甲基醚化和甲基酯化的尿酸酸rhamnogalactulonan II

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摘要

Rhamnogalacturonan II (RG-II) is a structurally complex pectic polysaccharide that exists as a borate ester cross-linked dimer in the cell walls of all vascular plants. The glycosyl sequence of RG-II is largely conserved, but there is evidence that galacturonic acid (GalA) methyl etherification and glucuronic acid (GlcA) methyl esterification vary in the A sidechain across plant species. Methyl esterification of the galacturonan backbone has also been reported but not confirmed. Here we describe a new procedure, utilizing aq. sodium borodeuteride (NaBD_(4))-reduced RG-II, to identify the methyl esterification status of backbone GalAs. Our data suggest that up to two different GalAs are esterified in the RG-II backbone. We also adapted a procedure based on methanolysis and NaBD_(4) reduction to identify 3-, 4-, and 3,4-O -methyl GalA in RG-II. These data, together with matrix-assisted laser desorption/ionization–time-of-flight mass spectrometry (MALDI-TOF) MS analysis of sidechain A generated from selected RG-IIs and their NaBD_(4)-reduced counterparts, suggest that methyl etherification of the β-linked GalA and methyl esterification of the GlcA are widespread. Nevertheless, the extent of these modifications varies between plant species. Our analysis of the sidechain B glycoforms in RG-II from different dicots and nonpoalean monocots suggests that this sidechain has a minimum structure of an O -acetylated hexasaccharide (Ara-[MeFuc]-Gal-AceA-Rha-Api-). To complement these studies, we provide further evidence showing that dimer formation and stability in vitro is cation and borate dependent. Taken together, our data further refine the primary sequence and sequence variation of RG-II and provide additional insight into dimer stability and factors controlling dimer self-assembly.
机译:rhamnogalacturonan II(RG-II)是一种结构复杂的果糖,其作为硼酸酯交联二聚体存在于所有血管植物的细胞壁中。 RG-II的糖基序列在很大程度上是保守的,但有证据表明半乳糖醛酸(GALA)甲基醚化和葡糖醛酸(GLCA)甲酯(GLCA)甲基酯化在植物种类的侧链中变化。还报告了半乳糖烷基骨骨架的甲基酯化,但未证实。在这里,我们描述了利用AQ的新程序。硼铁霉(NaBD_(4)) - 降低RG-II,以鉴定骨干淋巴结的甲基酯化状态。我们的数据表明,在RG-II骨干中,最多两种不同的含伽士酯化。我们还适用于基于甲醇溶解和NaBD_(4)还原的程序,以鉴定RG-II中的3-4-,4-和3,4- 甲基Gala。这些数据与基质辅助激光解吸/电离 - 飞行时间的传质质谱(MALDI-TOF)MS分析来自选定的RG-IIS和它们的NABD_(4) - 更新的对应物,表明甲醚化β-连接的GALA和GLCA的甲基酯化是广泛的。然而,这些修饰的程度在植物物种之间变化。我们对来自不同Dicots和Nonpoalean单子叶的RG-II中的侧链B糖族的分析表明,该侧链具有α-乙酰化六糖(ARA-γ-γ-ara-rha-API-)的最小结构。为了补充这些研究,我们提供了进一步的证据表明,体外的二聚体形成和稳定性依赖性。我们的数据进一步优化RG-II的主要序列和序列变化,并提供了额外的洞察二聚体稳定性和控制二聚体自组装的因素。

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