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介导胚胎成纤维细胞黏附的高甘露糖型糖识别的自我识别。

Self-recognition of high-mannose type glycans mediating adhesion of embryonal fibroblasts.

机构信息

Division of Biomembrane Research, Pacific Northwest Research Institute, and Department of Global Health, University of Washington, Seattle, WA 98122, USA.

出版信息

Glycoconj J. 2013 Jul;30(5):485-96. doi: 10.1007/s10719-012-9449-3. Epub 2012 Sep 25.

Abstract

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.

摘要

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。

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