Department of Anesthesiology and Critical Care Medicine, Division of Allergy and Clinical Immunology, Johns Hopkins University School of Medicine, Baltimore, MD, 21205, USA,
J Fluoresc. 2013 Nov;23(6):1147-55. doi: 10.1007/s10895-013-1244-4. Epub 2013 Jun 5.
Holothuria scabra produces a monomeric lectin (HSL) of 182 kDa. HSL showed strong antibacterial activity and induced bacterial agglutination under in vitro conditions, indicating its role in animals' innate immune responses. Very few lectins have been reported from echinoderms and none of these lectins have been explored in detail for their sugar-binding kinetics. Affinity, kinetics and thermodynamic analysis of glycans and glycoproteins binding to HSL were studied by fluorescence and surface plasmon resonance spectroscopy. Lectin binds with higher affinity to O-linked than N-linked asialo glycans, and the affinities were relatively higher than that for sialated glycans and glycoproteins. T-antigen α-methyl glycoside was the most potent ligand having the highest affinity (Ka 8.32 ×10(7) M(-1)). Thermodynamic and kinetic analysis indicated that the binding of galactosyl Tn-antigen and asialo glycans is accompanied by an enthalpic contribution in addition to higher association rate coupled by low activation energy for the association process. Presence of sialic acid or protein matrix inhibits binding. Higher affinity of HSL for O-glycans than N-glycans had biological implications; since HSL specifically recognizes bacteria, which have mucin or O-glycan cognate on their cell surfaces and play a major role in animal innate immunity. Since, HSL had higher affinity to T-antigen, makes it a useful tool for cancer diagnostic purpose.
糙海参产生一种 182 kDa 的单体凝集素(HSL)。HSL 在体外条件下表现出强烈的抗菌活性和诱导细菌凝集的作用,表明其在动物先天免疫反应中的作用。从棘皮动物中报道的凝集素很少,并且这些凝集素中没有一个被详细探索其糖结合动力学。通过荧光和表面等离子体共振光谱研究了糖和糖蛋白与 HSL 结合的亲和力、动力学和热力学分析。凝集素与 O-连接的非唾液酸化聚糖的结合亲和力高于 N-连接的非唾液酸化聚糖,亲和力相对高于唾液酸化聚糖和糖蛋白。T 抗原α-甲基糖苷是最有效的配体,具有最高的亲和力(Ka 8.32×10(7) M(-1))。热力学和动力学分析表明,除了高结合速率外,半乳糖基 Tn 抗原和非唾液酸化聚糖的结合还伴随着焓贡献,其结合过程的激活能较低。唾液酸或蛋白质基质的存在抑制结合。HSL 对 O-聚糖的亲和力高于 N-聚糖具有生物学意义;由于 HSL 特异性识别细菌,细菌表面有粘蛋白或 O-聚糖配体,在动物先天免疫中起主要作用。由于 HSL 对 T 抗原的亲和力更高,使其成为癌症诊断的有用工具。