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“旧的”欧洲卫矛凝集素代表了一类新的普遍存在的植物蛋白家族。

The "old" Euonymus europaeus agglutinin represents a novel family of ubiquitous plant proteins.

作者信息

Fouquaert Elke, Peumans Willy J, Smith David F, Proost Paul, Savvides Savvas N, Van Damme Els J M

机构信息

Laboratory of Biochemistry and Glycobiology, Department of Molecular Biotechnology , Ghent University, 9000 Ghent, Belgium.

出版信息

Plant Physiol. 2008 Jul;147(3):1316-24. doi: 10.1104/pp.108.116764. Epub 2008 May 1.

Abstract

Molecular cloning of the "old" but still unclassified Euonymus europaeus agglutinin (EEA) demonstrated that the lectin is a homodimeric protein composed of 152 residue subunits. Analysis of the deduced sequence indicated that EEA is synthesized without a signal peptide and undergoes no posttranslational processing apart from the removal of a six-residue N-terminal peptide. Glycan array screening confirmed the previously reported high reactivity of EEA toward blood group B oligosaccharides but also revealed binding to high mannose N-glycans, providing firm evidence for the occurrence of a plant carbohydrate-binding domain that can interact with structurally different glycans. Basic Local Alignment Search Tool searches indicated that EEA shares no detectable sequence similarity with any other lectin but is closely related evolutionarily to a domain that was first identified in some abscisic acid- and salt stress-responsive rice (Oryza sativa) proteins, and, according to the available sequence data, might be ubiquitous in Spermatophyta. Hence, EEA can be considered the prototype of a novel family of presumably cytoplasmic/nuclear proteins that are apparently ubiquitous in plants. Taking into account that some of these proteins are definitely stress related, the present identification of the EEA lectin domain might be a first step in the recognition of the involvement and importance of protein-glycoconjugate interactions in some essential cellular processes in Embryophyta.

摘要

对“古老”但仍未分类的欧洲卫矛凝集素(EEA)进行分子克隆,结果表明该凝集素是一种由152个残基亚基组成的同型二聚体蛋白。对推导序列的分析表明,EEA在合成时没有信号肽,除了去除一个六残基的N端肽外,不经历翻译后加工过程。聚糖阵列筛选证实了之前报道的EEA对B血型寡糖的高反应性,但也揭示了其与高甘露糖N聚糖的结合,为存在一个可与结构不同的聚糖相互作用的植物碳水化合物结合结构域提供了确凿证据。基本局部比对搜索工具搜索表明,EEA与任何其他凝集素均无可检测到的序列相似性,但在进化上与首先在一些脱落酸和盐胁迫响应水稻(Oryza sativa)蛋白中鉴定出的一个结构域密切相关,并且根据现有序列数据,可能在种子植物中普遍存在。因此,EEA可被视为一个推测为细胞质/核蛋白的新家族的原型,这些蛋白显然在植物中普遍存在。考虑到其中一些蛋白肯定与胁迫相关,目前对EEA凝集素结构域的鉴定可能是认识蛋白-糖缀合物相互作用在胚植物某些基本细胞过程中的参与情况和重要性的第一步。

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