Bloch Yehudi, Osterne Vinicius J S, Savvides Savvas N, Van Damme Els J M
Unit for Structural Biology, Department of Biochemistry and Microbiology, Ghent University, Technologiepark-Zwijnaarde 71, 9052 Ghent, Belgium.
Unit for Structural Biology, VIB Center for Inflammation Research, Technologiepark-Zwijnaarde 71, 9052 Ghent, Belgium.
Glycobiology. 2024 Dec 10;34(12). doi: 10.1093/glycob/cwae087.
Nictaba is a (GlcNAc)n-binding, stress-inducible lectin from Nicotiana tabacum that serves as a representative for the Nictaba-related lectins, a group of proteins that play pivotal roles in plant defense mechanisms and stress response pathways. Despite extensive research into biological activities and physiological role(s) of the lectin, the three-dimensional structure of Nictaba remained largely unknown. Here, we report crystal structures for Nictaba in the apo form and bound to chitotriose. The structures reveal that the Nictaba protomer has a jelly-roll fold, similar to the cucumber lectin Cus17, but exhibit a unique and previously unseen mode of dimerization. The chitotriose binding mode, similar to Cus17, centers around the central GlcNAc residue, providing insights into the determinants of specificity of Nictaba towards carbohydrate structures. By integrating these structural insights with inputs from glycan arrays, molecular docking, and molecular dynamics simulations, we propose that Nictaba employs a single carbohydrate-recognition domain within each of the two subunits in the dimer to display pronounced specificity towards GlcNAc-containing carbohydrates. Furthermore, we identified amino acid residues involved in the extended binding site capable of accommodating structurally diverse high-mannose and complex N-glycans. Glycan array and in silico analyses revealed interactions centered around the conserved Man3GlcNAc2 core, explaining the broad recognition of N-glycan structures. Collectively, the structural and biochemical insights presented here fill a void into the atlas of lectin structure-function relationships and pave the way for future developments in plant stress biology and lectin-based applications.
烟草凝集素(Nictaba)是一种来自烟草的能结合(GlcNAc)n且受胁迫诱导的凝集素,是烟草凝集素相关蛋白的代表,这类蛋白在植物防御机制和应激反应途径中发挥着关键作用。尽管对该凝集素的生物活性和生理作用进行了广泛研究,但其三维结构在很大程度上仍不清楚。在此,我们报道了脱辅基形式以及与壳三糖结合的烟草凝集素的晶体结构。这些结构表明,烟草凝集素单体具有果冻卷折叠结构,类似于黄瓜凝集素Cus17,但呈现出一种独特且前所未见的二聚化模式。壳三糖的结合模式与Cus17相似,以中央的GlcNAc残基为中心,这为了解烟草凝集素对碳水化合物结构特异性的决定因素提供了线索。通过将这些结构见解与聚糖阵列、分子对接和分子动力学模拟的结果相结合,我们提出,烟草凝集素在其二聚体的两个亚基中的每一个内都采用单个碳水化合物识别结构域,以对含GlcNAc的碳水化合物表现出明显的特异性。此外,我们确定了参与扩展结合位点的氨基酸残基,该位点能够容纳结构多样的高甘露糖型和复杂N - 聚糖。聚糖阵列和计算机模拟分析揭示了围绕保守的Man3GlcNAc2核心的相互作用,解释了对N - 聚糖结构的广泛识别。总的来说,本文所呈现的结构和生化见解填补了凝集素结构 - 功能关系图谱中的空白,并为植物应激生物学和基于凝集素的应用的未来发展铺平了道路。