Carlsson Susanne, Oberg Christopher T, Carlsson Michael C, Sundin Anders, Nilsson Ulf J, Smith David, Cummings Richard D, Almkvist Jenny, Karlsson Anna, Leffler Hakon
Section of Microbiology Immunology and Glycobiology (MIG), Sölvegatan 23, 223 62, Sweden.
Glycobiology. 2007 Jun;17(6):663-76. doi: 10.1093/glycob/cwm026. Epub 2007 Mar 5.
Galectin-8 has two different carbohydrate recognition domains (CRDs), the N-terminal Gal-8N and the C-terminal Gal-8C linked by a peptide, and has various effects on cell adhesion and signaling. To understand the mechanism for these effects further, we compared the binding activities of galectin-8 in solution with its binding and activation of cells. We used glycan array analysis to broaden the specificity profile of the two galectin-8 CRDs, as well as intact galectin-8s (short and long linker), confirming the unique preference for sulfated and sialylated glycans of Gal-8N. Using a fluorescence anisotropy assay, we examined the solution affinities for a subset of these glycans, the highest being 50 nM for NeuAcalpha2,3Lac by Gal-8N. Thus, carbohydrate-protein interactions can be of high affinity without requiring multivalency. More importantly, using fluorescence polarization, we also gained information on how the affinity is built by multiple weak interactions between different fragments of the glycan and its carrier molecule and the galectin CRD subsites (A-E). In intact galectin-8 proteins, the two domains act independently of each other in solution, whereas at a surface they act together. Ligands with moderate or weak affinity for the isolated CRDs on the array are bound strongly by intact galectin-8s. Also galectin-8 binding and signaling at cell surfaces can be explained by combined binding of the two CRDs to low or medium affinity ligands, and their highest affinity ligands, such as sialylated galactosides, are not required.
半乳糖凝集素-8有两个不同的碳水化合物识别结构域(CRD),即通过一个肽段连接的N端Gal-8N和C端Gal-8C,并且对细胞黏附和信号传导有多种作用。为了进一步了解这些作用的机制,我们比较了溶液中半乳糖凝集素-8的结合活性与其对细胞的结合和激活情况。我们使用聚糖阵列分析来拓宽两个半乳糖凝集素-8 CRD以及完整半乳糖凝集素-8(短连接子和长连接子)的特异性谱,证实了Gal-8N对硫酸化和唾液酸化聚糖的独特偏好。通过荧光各向异性测定,我们检测了这些聚糖中一部分的溶液亲和力,Gal-8N对NeuAcalpha2,3Lac的最高亲和力为50 nM。因此,碳水化合物-蛋白质相互作用可以具有高亲和力而无需多价性。更重要的是,通过荧光偏振,我们还获得了关于亲和力如何由聚糖及其载体分子的不同片段与半乳糖凝集素CRD亚位点(A-E)之间的多个弱相互作用构建而成的信息。在完整的半乳糖凝集素-8蛋白中,两个结构域在溶液中彼此独立起作用,而在表面它们共同起作用。阵列上对分离的CRD具有中等或弱亲和力的配体被完整的半乳糖凝集素-8强烈结合。此外,半乳糖凝集素-8在细胞表面的结合和信号传导可以通过两个CRD与低或中等亲和力配体的结合来解释,并且不需要其最高亲和力配体,如唾液酸化半乳糖苷。