Enríquez-Navas Pedro M, Guzzi Cinzia, Muñoz-García Juan C, Nieto Pedro M, Angulo Jesús
Andalusian Centre for Nanomedicine and Biotechnology (BIONAND), C/Severo Ochoa 35, Parque Tecnológico de Andalucía, 29590, Campanillas, Málaga, Spain.
Methods Mol Biol. 2015;1273:475-87. doi: 10.1007/978-1-4939-2343-4_28.
Glycan-receptor interactions are of fundamental relevance for a large number of biological processes, and their kinetics properties (medium/weak binding affinities) make them appropriated to be studied by ligand observed NMR techniques, among which saturation transfer difference (STD) NMR spectroscopy has been shown to be a very robust and powerful approach. The quantitative analysis of the results from a STD NMR study of a glycan-receptor interaction is essential to be able to translate the resulting spectral intensities into a 3D molecular model of the complex. This chapter describes how to carry out such a quantitative analysis by means of the Complete Relaxation and Conformational Exchange Matrix Approach for STD NMR (CORCEMA-ST), in general terms, and an example of a previous work on an antibody-glycan interaction is also shown.
聚糖-受体相互作用与大量生物学过程密切相关,其动力学特性(中等/弱结合亲和力)使其适合通过配体观测核磁共振技术进行研究,其中饱和转移差异(STD)核磁共振光谱已被证明是一种非常稳健且强大的方法。对聚糖-受体相互作用的STD核磁共振研究结果进行定量分析,对于将所得光谱强度转化为复合物的三维分子模型至关重要。本章总体上描述了如何通过用于STD核磁共振的完全弛豫和构象交换矩阵方法(CORCEMA-ST)进行这种定量分析,并且还展示了先前关于抗体-聚糖相互作用的一项工作实例。