Brown Jillian R, Fuster Mark M, Whisenant Thomas, Esko Jeffrey D
Department of Cellular and Molecular Medicine, Glycobiology Research and Training Center, University of California, San Diego, La Jolla, California 92093-0687, USA.
J Biol Chem. 2003 Jun 27;278(26):23352-9. doi: 10.1074/jbc.M303093200. Epub 2003 Apr 9.
A variety of human adenocarcinomas express sialylated, fucosylated Lewis blood group antigens on cell surface and secreted mucins. Binding of these antigens to P-selectin on platelets is thought to facilitate formation of platelet-tumor emboli in the circulation, which in turn allows sequestration of the tumor cells in the microvasculature. Here we report a pharmacologic approach for blocking these interactions through metabolic inhibition of sialylation. Peracetylated forms of Galbeta1,4GlcNAcbeta-O-naphthalenemethanol and GlcNAcbeta1,3Galbeta-O-naphthalenemethanol were taken up by LS180 human colon carcinoma cells, O-deacetylated, and utilized as biosynthetic intermediates, resulting in heterogeneous oligosaccharides. The primed oligosaccharides included sialylated, sulfated, and fucosylated products based on mass spectrometry. Assembly of free oligosaccharides on the glycosides decoyed glycosylation of cellular glycoproteins, as assessed by altered binding of lectins and carbohydrate-specific antibodies. Expression of alpha2,3-sialylated oligosaccharides on the cell surface was diminished specifically, whereas alpha2,6-sialylation and fucosylation were not. In U937 lymphoma cells, the glycosides decreased fucosylation without affecting sialylation. The differential inhibitory activities correlated inversely with fucosyltransferase and sialyltransferase activity based on enzyme assays and microarray analysis. Regardless of the mechanism, the disaccharides blocked the cells from forming selectin ligands and inhibited adhesion to immobilized selectins, suggesting that the glycosides might prove useful for interfering with tumor cell adhesion and metastasis.
多种人类腺癌在细胞表面和分泌性黏蛋白上表达唾液酸化、岩藻糖化的Lewis血型抗原。这些抗原与血小板上的P-选择素结合被认为有助于在循环中形成血小板-肿瘤栓子,进而使肿瘤细胞在微血管中滞留。在此我们报告一种通过对唾液酸化进行代谢抑制来阻断这些相互作用的药理学方法。Galβ1,4GlcNAcβ-O-萘甲醇和GlcNAcβ1,3Galβ-O-萘甲醇的全乙酰化形式被LS180人结肠癌细胞摄取、O-去乙酰化,并用作生物合成中间体,产生异质性寡糖。基于质谱分析,引发的寡糖包括唾液酸化、硫酸化和岩藻糖化产物。通过凝集素和碳水化合物特异性抗体结合的改变评估,糖苷上游离寡糖的组装诱骗了细胞糖蛋白的糖基化。细胞表面α2,3-唾液酸化寡糖的表达特异性降低,而α2,6-唾液酸化和岩藻糖化未受影响。在U937淋巴瘤细胞中,糖苷降低了岩藻糖化而不影响唾液酸化。基于酶分析和微阵列分析,不同的抑制活性与岩藻糖基转移酶和唾液酸基转移酶活性呈负相关。无论机制如何,二糖可阻止细胞形成选择素配体并抑制与固定化选择素的黏附,这表明糖苷可能对干扰肿瘤细胞黏附和转移有用。