Huang Li-De, Adak Avijit K, Yu Ching-Ching, Hsiao Wei-Chen, Lin Hong-Jyune, Chen Mu-Lin, Lin Chun-Cheng
Department of Chemistry, National Tsing Hua University, Hsinchu-300 (Taiwan).
Chemistry. 2015 Mar 2;21(10):3956-67. doi: 10.1002/chem.201405747. Epub 2015 Jan 8.
The design of high-affinity lectin ligands is critical for enhancing the inherently weak binding affinities of monomeric carbohydrates to their binding proteins. Glyco-gold nanoparticles (glyco-AuNPs) are promising multivalent glycan displays that can confer significantly improved functional affinity of glyco-AuNPs to proteins. Here, AuNPs are functionalized with several different carbohydrates to profile lectin affinities. We demonstrate that AuNPs functionalized with mixed thiolated ligands comprising glycan (70 mol %) and an amphiphilic linker (30 mol %) provide long-term stability in solutions containing high concentrations of salts and proteins, with no evidence of nonspecific protein adsorption. These highly stable glyco-AuNPs enable the detection of model plant lectins such as Concanavalin A, wheat germ agglutinin, and Ricinus communis Agglutinin 120, at subnanomolar and low picomolar levels through UV/Vis spectrophotometry and dynamic light scattering, respectively. Moreover, we develop in situ glyco-AuNPs-based agglutination on an oriented immobilized antibody microarray, which permits highly sensitive lectin sensing with the naked eye. In addition, this microarray is capable of detecting lectins presented individually, in other environmental settings, or in a mixture of samples. These results indicate that glyconanoparticles represent a versatile and highly sensitive method for detecting and probing the binding of glycan to proteins, with significant implications for the construction of a variety of platforms for the development of glyconanoparticle-based biosensors.
高亲和力凝集素配体的设计对于增强单体碳水化合物与其结合蛋白之间固有的弱结合亲和力至关重要。糖基化金纳米颗粒(glyco-AuNPs)是很有前景的多价聚糖展示物,可显著提高glyco-AuNPs与蛋白质的功能亲和力。在此,用几种不同的碳水化合物对金纳米颗粒进行功能化,以分析凝集素亲和力。我们证明,用包含聚糖(70 mol %)和两亲性连接体(30 mol %)的混合硫醇化配体功能化的金纳米颗粒,在含有高浓度盐和蛋白质的溶液中具有长期稳定性,且没有非特异性蛋白质吸附的迹象。这些高度稳定的glyco-AuNPs能够分别通过紫外/可见分光光度法和动态光散射,在亚纳摩尔和低皮摩尔水平检测模型植物凝集素,如伴刀豆球蛋白A、麦胚凝集素和蓖麻凝集素120。此外,我们在定向固定化抗体微阵列上开发了基于原位glyco-AuNPs的凝集反应,可实现用肉眼进行高灵敏度的凝集素传感。此外,该微阵列能够检测单独呈现的、在其他环境条件下的或样品混合物中的凝集素。这些结果表明,糖纳米颗粒是一种用于检测和探究聚糖与蛋白质结合的通用且高度灵敏的方法,对构建多种基于糖纳米颗粒的生物传感器开发平台具有重要意义。