Kannagi R, Nudelman E, Hakomori S
Proc Natl Acad Sci U S A. 1982 Jun;79(11):3470-4. doi: 10.1073/pnas.79.11.3470.
A possible role of ceramide in defining the carbohydrate structure of glycolipids and the expression of glycolipid function has been proposed, on the basis of our finding that the ceramide composition of "lacto-series" glycosphingolipid isolated from human erythrocytes shows a remarkable correlation with the terminal carbohydrate structure: (i) The ceramides of three glycosphingolipids with Lex (or x) determinant [Gal beta 1 leads to 4(Fuc alpha 1 leads to 3) GlcNAc] had almost exclusively 16:0 fatty acid; in contrast, the ceramide of its positional isomer H determinant had mainly 20--24:0 fatty acids. (ii) The ceramide of two glycosphingolipids with NeuAc alpha 2 leads to 6GAL structure was predominantly of 16:0 fatty acid, in contrast to that of its positional isomer NeuAc alpha 2 leads to 3Gal residue, in which the ceramide had 20--24:0 fatty acids. These results, together with our previous observation that ceramide composition of mouse lymphoma and myelocytic leukemia MI cells affects their antigenicity, suggest that ceramide structure may define the organization of glycosyltransferase for synthesis of the carbohydrate determinants and may affect the organization and orientation of the carbohydrate chain in membranes, eliciting or suppressing the reactivity to its ligand. Because these glycolipids with Lex and NeuAc alpha 2 leads to 6Gal structures are developmentally regulated and are highly expressed in certain tumors, ceramide composition may affect development, differentiation, and oncogenesis.
基于我们的发现,有人提出神经酰胺在确定糖脂的碳水化合物结构和糖脂功能表达方面可能发挥作用。我们发现,从人红细胞中分离出的“乳糖系列”糖鞘脂的神经酰胺组成与末端碳水化合物结构呈现出显著的相关性:(i)三种带有Lex(或x)决定簇[Galβ1→4(Fucα1→3)GlcNAc]的糖鞘脂的神经酰胺几乎只含有16:0脂肪酸;相比之下,其位置异构体H决定簇的糖鞘脂的神经酰胺主要含有20 - 24:0脂肪酸。(ii)两种带有NeuAcα2→6GAL结构的糖鞘脂的神经酰胺主要是16:0脂肪酸,与其位置异构体NeuAcα2→3Gal残基的糖鞘脂形成对比,后者的神经酰胺含有20 - 24:0脂肪酸。这些结果,连同我们之前观察到的小鼠淋巴瘤和髓细胞白血病MI细胞的神经酰胺组成会影响其抗原性,表明神经酰胺结构可能决定用于合成碳水化合物决定簇的糖基转移酶的组织方式,并可能影响膜中碳水化合物链的组织和方向,引发或抑制对其配体的反应性。由于这些带有Lex和NeuAcα2→6Gal结构的糖脂在发育过程中受到调控,并且在某些肿瘤中高度表达,神经酰胺组成可能会影响发育、分化和肿瘤发生。