UCIBIO, REQUIMTE, Departamento de Química, Faculdade De Ciências e Tecnologia, Universidade Nova de Lisboa, 2829-516, Caparica, Portugal.
CIC-bioGUNE Bizkaia, 48160, Derio, Spain.
Chemistry. 2017 Sep 21;23(53):13213-13220. doi: 10.1002/chem.201702800. Epub 2017 Aug 17.
Protein-glycan interactions as modulators for quinary structures in crowding environments were explored. The interaction between human galectin 3 (Gal-3) and distinct macromolecular crowders, such as bovine and human serum albumin (BSA and HSA), Ficoll 70 and PEG3350, was scrutinized. The molecular recognition event of the specific ligand, lactose, by Gal-3 in crowding conditions was evaluated. Gal-3 interactions were monitored by NMR analysing chemical shift perturbation (CSP) and line broadening of H N-HSQC signals. The intensity of the Gal-3 H N-HSQC signals decreased in the presence of all crowders, due to the increase in the solution viscosity and to the formation of large protein complexes. When glycosylated containing samples of BSA and HSA were used, signal broadening was more severe than that observed in the presence of the more viscous solutions of PEG3350 and Ficoll 70. However, for the samples containing glycoproteins, the signal intensity of H N-HSQC recovered upon addition of lactose. We show that serum proteins interact with Gal-3, through their α2,3-linked sialylgalactose moieties exposed at their surfaces, competing with lactose for the same binding site. The quinary interaction between Gal-3 and serum glycoproteins, could help to co-localize Gal-3 at the cell surface, and may play a role in adhesion and signalling functions of this protein.
探索了在拥挤环境中作为五进制结构调节剂的蛋白-聚糖相互作用。研究了人半乳糖凝集素 3(Gal-3)与不同大分子拥挤剂(如牛血清白蛋白(BSA)和人血清白蛋白(HSA)、Ficoll 70 和 PEG3350)之间的相互作用。评估了 Gal-3 在拥挤条件下与特定配体乳糖的分子识别事件。通过分析化学位移扰动(CSP)和 H N-HSQC 信号线宽,监测 Gal-3 的相互作用。在所有拥挤剂存在的情况下,Gal-3 的 H N-HSQC 信号强度降低,这是由于溶液粘度增加和大蛋白质复合物的形成所致。当使用含有糖基化的 BSA 和 HSA 样品时,信号展宽比在更粘稠的 PEG3350 和 Ficoll 70 溶液中观察到的更严重。然而,对于含有糖蛋白的样品,在添加乳糖后,H N-HSQC 的信号强度恢复。我们表明,血清蛋白通过其表面暴露的α2,3 连接的唾液酸半乳糖部分与 Gal-3 相互作用,与乳糖竞争相同的结合位点。Gal-3 与血清糖蛋白之间的五进制相互作用可能有助于 Gal-3 在细胞表面的共定位,并可能在该蛋白的粘附和信号转导功能中发挥作用。