Thomès Luc, Bojar Daniel
Department of Chemistry and Molecular Biology, University of Gothenburg, Gothenburg, Sweden.
Wallenberg Centre for Molecular and Translational Medicine, University of Gothenburg, Gothenburg, Sweden.
Front Mol Biosci. 2021 Sep 22;8:755577. doi: 10.3389/fmolb.2021.755577. eCollection 2021.
The extraordinary diversity of glycans leads to large differences in the glycomes of different kingdoms of life. Yet, while most monosaccharides are solely found in certain taxonomic groups, there is a small set of monosaccharides with widespread distribution across nearly all domains of life. These general monosaccharides are particularly relevant for glycan motifs, as they can readily be used by commensals and pathogens to mimic host glycans or hijack existing glycan recognition systems. Among these, the monosaccharide fucose is especially interesting, as it frequently presents itself as a terminal monosaccharide, primed for interaction with proteins. Here, we analyze fucose-containing glycan motifs across all taxonomic kingdoms. Using a hereby presented large species-specific glycan dataset and a plethora of methods for glycan-focused bioinformatics and machine learning, we identify characteristic as well as shared fucose-containing glycan motifs for various taxonomic groups, demonstrating clear differences in fucose usage. Even within domains, fucose is used differentially based on an organism's physiology and habitat. We particularly highlight differences in fucose-containing motifs between vertebrates and invertebrates. With the example of pathogenic and non-pathogenic strains, we also demonstrate the importance of fucose-containing motifs in molecular mimicry and thereby pathogenic potential. We envision that this study will shed light on an important class of glycan motifs, with potential new insights into the role of fucosylated glycans in symbiosis, pathogenicity, and immunity.
聚糖的非凡多样性导致不同生命王国的糖组存在巨大差异。然而,虽然大多数单糖仅存在于某些分类群中,但有一小部分单糖在几乎所有生命领域都有广泛分布。这些常见单糖与聚糖基序特别相关,因为共生菌和病原体可以很容易地利用它们来模拟宿主聚糖或劫持现有的聚糖识别系统。其中,单糖岩藻糖特别有趣,因为它经常作为末端单糖出现,易于与蛋白质相互作用。在这里,我们分析了所有分类王国中含岩藻糖的聚糖基序。利用本文提供的大量物种特异性聚糖数据集以及大量针对聚糖的生物信息学和机器学习方法,我们确定了不同分类群中含岩藻糖的特征性以及共享的聚糖基序,表明岩藻糖的使用存在明显差异。即使在各领域内,岩藻糖的使用也因生物体的生理特征和栖息地而有所不同。我们特别强调了脊椎动物和无脊椎动物之间含岩藻糖基序的差异。以致病和非致病菌株为例,我们还证明了含岩藻糖基序在分子模拟以及致病潜力方面的重要性。我们设想这项研究将揭示一类重要的聚糖基序,为岩藻糖化聚糖在共生、致病性和免疫中的作用提供潜在的新见解。