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一种源自寡聚半乳糖醛酸的分子探针揭示了钙介导的果胶在顶端生长结构细胞壁中络合作用的动态变化。

An oligogalacturonide-derived molecular probe demonstrates the dynamics of calcium-mediated pectin complexation in cell walls of tip-growing structures.

作者信息

Mravec Jozef, Kračun Stjepan K, Rydahl Maja G, Westereng Bjørge, Pontiggia Daniela, De Lorenzo Giulia, Domozych David S, Willats William G T

机构信息

Department of Plant and Environmental Sciences, University of Copenhagen, Thorvaldsensvej 40, 1871, Frederiksberg-C, Denmark.

Department of Chemistry, Biotechnology and Food Science (IKBM), Norwegian University of Life Sciences, Ås, Norway.

出版信息

Plant J. 2017 Aug;91(3):534-546. doi: 10.1111/tpj.13574. Epub 2017 May 29.

Abstract

Pectic homogalacturonan (HG) is one of the main constituents of plant cell walls. When processed to low degrees of esterification, HG can form complexes with divalent calcium ions. These macromolecular structures (also called egg boxes) play an important role in determining the biomechanics of cell walls and in mediating cell-to-cell adhesion. Current immunological methods enable only steady-state detection of egg box formation in situ. Here we present a tool for efficient real-time visualisation of available sites for HG crosslinking within cell wall microdomains. Our approach is based on calcium-mediated binding of fluorescently tagged long oligogalacturonides (OGs) with endogenous de-esterified HG. We established that more than seven galacturonic acid residues in the HG chain are required to form a stable complex with endogenous HG through calcium complexation in situ, confirming a recently suggested thermodynamic model. Using defined carbohydrate microarrays, we show that the long OG probe binds exclusively to HG that has a very low degree of esterification and in the presence of divalent ions. We used this probe to study real-time dynamics of HG during elongation of Arabidopsis pollen tubes and root hairs. Our results suggest a different spatial organisation of incorporation and processing of HG in the cell walls of these two tip-growing structures.

摘要

果胶同型半乳糖醛酸聚糖(HG)是植物细胞壁的主要成分之一。当加工至低酯化度时,HG可与二价钙离子形成复合物。这些大分子结构(也称为蛋盒结构)在决定细胞壁的生物力学以及介导细胞间粘附方面发挥着重要作用。目前的免疫学方法仅能对原位蛋盒结构的形成进行稳态检测。在此,我们展示了一种工具,可用于高效实时可视化细胞壁微域内HG交联的可用位点。我们的方法基于荧光标记的长寡聚半乳糖醛酸(OGs)与内源性脱酯化HG的钙介导结合。我们确定,HG链中需要超过七个半乳糖醛酸残基才能通过原位钙络合与内源性HG形成稳定的复合物,这证实了最近提出的热力学模型。使用定义的碳水化合物微阵列,我们表明长OG探针仅与具有非常低酯化度且存在二价离子的HG结合。我们使用该探针研究拟南芥花粉管和根毛伸长过程中HG的实时动态。我们的结果表明,在这两种顶端生长结构的细胞壁中,HG的掺入和加工存在不同的空间组织方式。

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