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外生菌根担子菌双色蜡蘑β-三叶草结构域的原子晶体结构和糖特异性。

Atomic crystal structure and sugar specificity of a β-trefoil lectin domain from the ectomycorrhizal basidiomycete Laccaria bicolor.

机构信息

Department of Crystallography and Structural Biology, Institute of Physical Chemistry Rocasolano, CSIC, Serrano 119, 28006 Madrid, Spain.

Department of Biological Physical Chemistry, Institute of Physical Chemistry Rocasolano, CSIC, Serrano 119, 28006 Madrid, Spain; CIBER of Respiratory Diseases Enfermedades Respiratorias (CIBERES), ISCIII, Avda. Monforte de Lemos 3-5, 28029 Madrid, Spain.

出版信息

Int J Biol Macromol. 2023 Apr 1;233:123507. doi: 10.1016/j.ijbiomac.2023.123507. Epub 2023 Feb 7.

Abstract

Lectins from fruiting bodies are a diverse group of sugar-binding proteins from mushrooms that face the biologically relevant challenge of discriminating self- from non-self carbohydrate structures, therefore providing a basis for an innate defence system. Such a system entails both detection and destruction of invaders and/or feeders, and in contrast to more complex organisms with immense immune systems, these two functions normally rely on multitasking lectins, namely, lectins with different functional modules. Here, we present a novel fungal lectin, LBL, from the basidiomycete Laccaria bicolor. Using a diverse set of biophysical techniques, we unveil the fine details of the sugar-binding specificity of the N-terminal β-trefoil of LBL (LBL), whose structure has been determined at the highest resolution so far reported for such a fold. LBL binds complex poly-N-Acetyllactosamine polysaccharides and also robust LBL binding to Caenorhabditis elegans and Drosophila melanogaster cellular extracts was detected in microarray assays, with a seeming preference for the fruit fly adult and pupa stages over the larva stage. Prediction of the structure of the C-terminal part of LBL with AlphaFold reveals a tandem repeat of two structurally almost identical domains of around 110 amino acids each, despite sharing low sequence conservation.

摘要

担子菌果实体中的凝集素是一类从蘑菇中提取的具有糖结合活性的蛋白质,它们面临着从自我和非自我碳水化合物结构中区分的生物学相关挑战,因此为先天防御系统提供了基础。这样的系统需要同时检测和破坏入侵者和/或食源,与具有庞大免疫系统的更复杂的生物体不同,这两个功能通常依赖于多功能凝集素,即具有不同功能模块的凝集素。在这里,我们介绍了一种来自担子菌担子菌的新型真菌凝集素 LBL。我们使用了多种生物物理技术,揭示了 LBL(LBL)N 端 β-三叶折叠糖结合特异性的精细细节,迄今为止,这种结构已被确定为该折叠的最高分辨率。LBL 结合复杂的多聚-N-乙酰乳糖胺多糖,在微阵列分析中也检测到 LBL 与秀丽隐杆线虫和黑腹果蝇细胞提取物的强结合,似乎对果蝇成虫和蛹期比对幼虫期更有偏好。用 AlphaFold 预测 LBL 的 C 端部分的结构,揭示了两个结构几乎完全相同的约 110 个氨基酸的串联重复,尽管共享低序列保守性。

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