Division of Biomembrane Research, Pacific Northwest Research Institute, and Department of Global Health, University of Washington, Seattle, WA 98122, USA.
Glycoconj J. 2013 Jul;30(5):485-96. doi: 10.1007/s10719-012-9449-3. Epub 2012 Sep 25.
High-mannose type N-linked glycan with 6 mannosyl residues, termed "M6Gn2", displayed clear binding to the same M6Gn2, conjugated with ceramide mimetic (cer-m) and incorporated in liposome, or coated on polystyrene plates. However, the conjugate of M6Gn2-cer-m did not interact with complex-type N-linked glycan with various structures having multiple GlcNAc termini, conjugated with cer-m. The following observations indicate that hamster embryonic fibroblast NIL-2 K cells display homotypic autoadhesion, mediated through the self-recognition capability of high-mannose type glycans expressed on these cells: (i) NIL-2 K cells display clear binding to lectins capable of binding to high-mannose type glycans (e.g., ConA), but not to other lectins capable of binding to other carbohydrates (e.g. GS-II). (ii) NIL-2 K cells adhere strongly to plates coated with M6Gn2-cer-m, but not to plates coated with complex-type N-linked glycans having multiple GlcNAc termini, conjugated with cer-m; (iii) degree of NIL-2 K cell adhesion to plates coated with M6Gn2-cer-m showed a clear dose-dependence on the amount of M6Gn2-cer-m; and (iv) the degree of NIL-2 K adhesion to plates coated with M6Gn2-cer-m was inhibited in a dose-dependent manner by α1,4-L-mannonolactone, the specific inhibitor in high-mannose type glycans addition. These data indicate that adhesion of NIL-2 K is mediated by self-aggregation of high mannose type glycan. Further studies are to be addressed on auto-adhesion of other types of cells based on self interaction of high mannose type glycans.
高甘露糖型 N-连接聚糖,具有 6 个甘露糖残基,称为“M6Gn2”,与神经酰胺类似物(cer-m)缀合并掺入脂质体,或涂覆在聚苯乙烯板上时,显示出与自身的清晰结合。然而,M6Gn2-cer-m 的缀合物与具有多个 GlcNAc 末端的各种结构的复合型 N-连接聚糖没有相互作用,这些聚糖与 cer-m 缀合。以下观察结果表明,仓鼠胚胎成纤维细胞 NIL-2 K 细胞通过表达在这些细胞上的高甘露糖型糖的自我识别能力,显示同源自体黏附:(i)NIL-2 K 细胞与能够结合高甘露糖型聚糖的凝集素(例如 ConA)显示出清晰的结合,但与其他能够结合其他碳水化合物的凝集素(例如 GS-II)没有结合。(ii)NIL-2 K 细胞强烈附着在涂有 M6Gn2-cer-m 的平板上,但不附着在涂有具有多个 GlcNAc 末端的复合型 N-连接聚糖,与 cer-m 缀合;(iii)NIL-2 K 细胞对涂有 M6Gn2-cer-m 的平板的黏附程度与 M6Gn2-cer-m 的量呈明显的剂量依赖性;(iv)NIL-2 K 细胞对涂有 M6Gn2-cer-m 的平板的黏附程度被α1,4-L-甘露内脂以剂量依赖的方式抑制,α1,4-L-甘露内脂是高甘露糖型聚糖添加物的特异性抑制剂。这些数据表明,NIL-2 K 的黏附是由高甘露糖型聚糖的自我聚集介导的。将基于高甘露糖型糖的自我相互作用,进一步研究其他类型细胞的自体黏附。