Department of Chemistry and Biochemistry, University of California San Diego, 9500 Gilman Drive, La Jolla, CA 92093-0358, USA.
Faraday Discuss. 2019 Oct 30;219(0):138-153. doi: 10.1039/c9fd00024k.
In the mucosal epithelium, the cellular glycocalyx can project tens to hundreds of nanometers into the extracellular space, erecting a physical barrier that provides protective functions, mediates the exchange of nutrients and regulates cellular interactions. Little is understood about how the physical properties of the mucosal glycocalyx influence molecular recognition at the cellular boundary. Here, we report the synthesis of PEG-based glycopolymers with tunable glycan composition, which approximate the extended architecture of mucin glycoproteins, and tether them to the plasma membranes of red blood cells (RBC) to construct an artificial mucin brush-like glycocalyx. We evaluated the association of two lectins, ConA and SNA, with their endogenous glycan ligands on the surface of the remodelled cells. The extended glycocalyx provided protection against agglutination of RBCs by both lectins; however, the rate and magnitude of ConA binding were attenuated to a greater degree in the presence of the glycopolymer spectators compared to those measured for SNA. The different sensitivity of ConA and SNA to glycocalyx crowding likely arises from the distinct presentation of their mannoside and sialoside receptors, respectively, within the native RBC glycocalyx.
在黏膜上皮细胞中,细胞糖萼可以向细胞外空间延伸数十到数百纳米,形成物理屏障,提供保护功能、介导营养物质交换和调节细胞间相互作用。对于黏膜糖萼的物理性质如何影响细胞边界处的分子识别,目前我们知之甚少。在这里,我们报告了聚乙二醇(PEG)基糖聚合物的合成,这些聚合物具有可调节的聚糖组成,近似于粘蛋白糖蛋白的伸展结构,并将其连接到红细胞(RBC)的质膜上,以构建人工粘蛋白刷状糖萼。我们评估了两种凝集素(ConA 和 SNA)与其在细胞表面的内源性糖配体的结合。伸展的糖萼可以防止两种凝集素对 RBC 的凝集;然而,与 SNA 相比,在存在糖聚合物旁观者的情况下,ConA 结合的速率和程度受到更大程度的抑制。ConA 和 SNA 对糖萼拥挤的不同敏感性可能源于其甘露糖苷和唾液酸受体在天然 RBC 糖萼中的不同呈现方式。