Siukstaite Lina, Imberty Anne, Römer Winfried
Faculty of Biology, University of Freiburg, Freiburg, Germany.
Signalling Research Centres BIOSS and CIBSS, University of Freiburg, Freiburg, Germany.
Front Mol Biosci. 2021 Jul 26;8:704685. doi: 10.3389/fmolb.2021.704685. eCollection 2021.
Glycolipids are present on the surfaces of all living cells and thereby represent targets for many protein receptors, such as lectins. Understanding the interactions between lectins and glycolipids is essential for investigating the functions of lectins and the dynamics of glycolipids in living membranes. This review focuses on lectins binding to the glycosphingolipid globotriaosylceramide (Gb3), an attractive host cell receptor, particularly for pathogens and pathogenic products. Shiga toxin (Stx), from or , which is one of the most virulent bacterial toxins, binds and clusters Gb3, leading to local negative membrane curvature and the formation of tubular plasma membrane invaginations as the initial step for clathrin-independent endocytosis. After internalization, it is embracing the retrograde transport pathway. In comparison, the homotetrameric lectin LecA from can also bind to Gb3, triggering the so-called lipid zipper mechanism, which results in membrane engulfment of the bacterium as an important step for its cellular uptake. Notably, both lectins bind to Gb3 but induce distinct plasma membrane domains and exploit mainly different transport pathways. Not only, several other Gb3-binding lectins have been described from bacterial origins, such as the adhesins SadP (from ) and PapG (from ), but also from animal, fungal, or plant origins. The variety of amino acid sequences and folds demonstrates the structural versatilities of Gb3-binding lectins and asks the question of the evolution of specificity and carbohydrate recognition in different kingdoms of life.
糖脂存在于所有活细胞的表面,因此是许多蛋白质受体(如凝集素)的作用靶点。了解凝集素与糖脂之间的相互作用对于研究凝集素的功能以及糖脂在活细胞膜中的动态变化至关重要。本综述聚焦于凝集素与糖鞘脂球三糖神经酰胺(Gb3)的结合,Gb3是一种具有吸引力的宿主细胞受体,尤其对于病原体和致病产物而言。来自 或 的志贺毒素(Stx)是最具毒性的细菌毒素之一,它能结合并聚集Gb3,导致局部负膜曲率以及形成管状质膜内陷,这是网格蛋白非依赖性内吞作用的起始步骤。内化后,它进入逆行运输途径。相比之下,来自 的同四聚体凝集素LecA也能与Gb3结合,触发所谓的脂质拉链机制,这导致细菌的膜包裹,这是其细胞摄取的重要步骤。值得注意的是,这两种凝集素都与Gb3结合,但诱导不同的质膜结构域并主要利用不同的运输途径。不仅如此,还描述了几种其他来自细菌来源(如黏附素SadP(来自 )和PapG(来自 ))以及动物、真菌或植物来源的Gb3结合凝集素。氨基酸序列和折叠方式的多样性展示了Gb3结合凝集素的结构多样性,并引发了不同生命王国中特异性和碳水化合物识别进化的问题。