Glycosphingolipids are ubiquitous components of animal cell membranes. They are constituted by the basic structure of ceramide with its hydroxyl group linked to single carbohydrates or oligosaccharide chains of different complexity. The combination of the properties of their hydrocarbon moiety with those derived from the variety and complexity of their hydrophilic polar head groups confers to these lipids an extraordinary capacity for molecular-to-supramolecular transduction across the lateral/transverse planes in biomembranes and beyond. In our opinion, most of the advances made over the last decade on the biophysical behavior of glycosphingolipids can be organized into three related aspects of increasing structural complexity: (1) intrinsic codes: local molecular interactions of glycosphingolipids translated into structural self-organization. (2) Surface topography: projection of molecular shape and miscibility of glycosphingolipids into formation of coexisting membrane domains. (3) Beyond the membrane interface: glycosphingolipid as modulators of structural topology, bilayer recombination and surface biocatalysis.

译文

鞘糖脂是动物细胞膜中普遍存在的成分。它们由神经酰胺的基本结构组成,其羟基与单个碳水化合物或不同复杂性的寡糖链相连。它们的烃部分的特性与亲水性极性头基的多样性和复杂性的特性相结合,赋予了这些脂质在生物膜内外的横向/横向平面上进行分子到超分子转导的非凡能力。我们认为,在过去十年中,关于鞘糖脂的生物物理行为的大多数进展可以组织为结构复杂性增加的三个相关方面 :( 1) 内在代码: 鞘糖脂的局部分子相互作用转化为结构自组织。(2) 表面形貌: 分子形状的投影和鞘糖脂的混溶性形成共存的膜结构域。(3) 超越膜界面: 糖鞘脂作为结构拓扑,双层重组和表面生物催化的调节剂。

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