do Nascimento Antônia S F, Serna Sonia, Beloqui Ana, Arda Ana, Sampaio Alexandre H, Walcher Janika, Ott Dimitri, Unverzagt Carlo, Reichardt Niels-Christian, Jimenez-Barbero Jesus, Nascimento Kyria S, Imberty Anne, Cavada Benildo S, Varrot Annabelle
CERMAV, UPR5301, CNRS and Université Grenoble Alpes, 38041 Grenoble, France Departamento de Bioquímica e Biologia Molecular, Universidade Federal do Ceará, Fortaleza, Brazil.
Glycotechnology Laboratory, CICbiomaGUNE, 20009 San Sebastian, Spain.
Glycobiology. 2015 Jun;25(6):607-16. doi: 10.1093/glycob/cwv002. Epub 2015 Jan 8.
We determined the specificity of BTL, a lectin from the red marine alga Bryothamnion triquetrum, toward fucosylated oligosaccharides. BTL showed a strict specificity for the core α1,6-fucosylation, which is an important marker for cancerogenesis and quality control of therapeutical antibodies. The double fucosylation α1,6 and α1,3 was also recognized, but the binding was totally abolished in the sole presence of the α1,3-fucosylation. A more detailed analysis of the specificity of BTL showed a preference for bi- and tri-antennary nonbisected N-glycans. Sialylation or fucosylation at the nonreducing end of N-glycans did not affect the recognition by the lectin. BTL displayed a strong affinity for a core α1,6-fucosylated octasaccharide with a Kd of 12 μM by titration microcalorimetry. The structural characterization of the interaction between BTL and the octasaccharide was obtained by STD-NMR. It demonstrated an extended epitope for recognition that includes the fucose residue, the distal GlcNAc and one mannose residue. Recombinant rBTL was obtained in Escherichia coli and characterized. Its binding properties for carbohydrates were studied using hemagglutination tests and glycan array analysis. rBTL was able to agglutinate rabbit erythrocytes with strong hemagglutination activity only after treatment with papain and trypsin, indicating that its ligands were not directly accessible at the cell surface. The hemagglutinating properties of rBTL confirm the correct folding and functional state of the protein. The results show BTL as a potent candidate for cancer diagnosis and as a reagent for the preparation and quality control of antibodies lacking core α1,6-fucosylated N-glycans.
我们测定了红藻三角叉节藻(Bryothamnion triquetrum)中的凝集素BTL对岩藻糖基化寡糖的特异性。BTL对核心α1,6-岩藻糖基化表现出严格的特异性,这是癌症发生和治疗性抗体质量控制的重要标志物。双岩藻糖基化α1,6和α1,3也能被识别,但仅存在α1,3-岩藻糖基化时结合完全消失。对BTL特异性的更详细分析表明,它更倾向于双天线和三天线非平分的N-聚糖。N-聚糖非还原端的唾液酸化或岩藻糖基化不影响凝集素的识别。通过滴定微量热法,BTL对核心α1,6-岩藻糖基化的八糖表现出强烈亲和力,解离常数(Kd)为12 μM。通过STD-NMR获得了BTL与八糖之间相互作用的结构表征。它证明了一个扩展的识别表位,包括岩藻糖残基、远端N-乙酰葡糖胺和一个甘露糖残基。在大肠杆菌中获得了重组rBTL并对其进行了表征。使用血凝试验和聚糖阵列分析研究了它对碳水化合物的结合特性。rBTL只有在用木瓜蛋白酶和胰蛋白酶处理后才能以强血凝活性凝集兔红细胞,这表明其配体在细胞表面不能直接被接触到。rBTL的血凝特性证实了该蛋白的正确折叠和功能状态。结果表明,BTL是癌症诊断的有力候选物,也是制备缺乏核心α1,6-岩藻糖基化N-聚糖的抗体及进行质量控制的试剂。