Department of Chemistry, University of California, Berkeley, California 94720, United States.
J Am Chem Soc. 2012 Sep 26;134(38):15732-42. doi: 10.1021/ja302193u. Epub 2012 Sep 12.
Interactions of mucin glycoproteins with cognate receptors are dictated by the structures and spatial organization of glycans that decorate the mucin polypeptide backbone. The glycan-binding proteins, or lectins, that interact with mucins are often oligomeric receptors with multiple ligand binding domains. In this work, we employed a microarray platform comprising synthetic glycopolymers that emulate natural mucins arrayed at different surface densities to evaluate how glycan valency and spatial separation affect the preferential binding mode of a particular lectin. We evaluated a panel of four lectins (Soybean agglutinin (SBA), Wisteria floribunda lectin (WFL), Vicia villosa-B-4 agglutinin (VVA), and Helix pomatia agglutin (HPA)) with specificity for α-N-acetylgalactosamine (α-GalNAc), an epitope displayed on mucins overexpressed in many adenocarcinomas. While these lectins possess the ability to agglutinate A(1)-blood cells carrying the α-GalNAc epitope and cross-link low valency glycoconjugates, only SBA showed a tendency to form intermolecular cross-links among the arrayed polyvalent mucin mimetics. These results suggest that glycopolymer microarrays can reveal discrete higher-order binding preferences beyond the recognition of individual glycan epitopes. Our findings indicate that glycan valency can set thresholds for cross-linking by lectins. More broadly, well-defined synthetic glycopolymers enable the integration of glycoconjugate structural and spatial diversity in a single microarray screening platform.
粘蛋白糖蛋白与同源受体的相互作用取决于糖链的结构和空间组织,这些糖链修饰了粘蛋白多肽主链。与粘蛋白相互作用的糖结合蛋白(或凝集素)通常是具有多个配体结合域的寡聚受体。在这项工作中,我们使用了一种由合成糖聚合物组成的微阵列平台,这些聚合物模拟了在不同表面密度下排列的天然粘蛋白,以评估糖的价数和空间分离如何影响特定凝集素的优先结合模式。我们评估了一组四种凝集素(大豆凝集素(SBA)、豌豆凝集素(WFL)、野葛凝集素-B-4(VVA)和鳞茎毛孢凝集素(HPA)),它们特异性识别α-N-乙酰半乳糖胺(α-GalNAc),这是许多腺癌中过度表达的粘蛋白上的一个表位。虽然这些凝集素有凝集携带α-GalNAc 表位的 A(1)-血红细胞和交联低价糖缀合物的能力,但只有 SBA 显示出在排列的多价粘蛋白模拟物之间形成分子间交联的趋势。这些结果表明,糖聚合物微阵列可以揭示离散的高阶结合偏好,超出了对单个糖表位的识别。我们的发现表明,糖的价数可以为凝集素的交联设定阈值。更广泛地说,定义良好的合成糖聚合物可以在单个微阵列筛选平台中整合糖缀合物的结构和空间多样性。