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槐豆凝集素的结构功能分析及糖结合研究。

Structural-functional insights and studies on saccharide binding of Sophora japonica seed lectin.

机构信息

Division of Biochemical Sciences, CSIR-National Chemical Laboratory, Dr. Homi Bhabha Road, Pune 411008, India.

Division of Physical and Materials Chemistry, CSIR-National Chemical Laboratory, Dr. Homi Bhabha Road, Pune 411008, India.

出版信息

Int J Biol Macromol. 2016 Oct;91:75-84. doi: 10.1016/j.ijbiomac.2016.05.047. Epub 2016 May 13.

Abstract

Functional and conformational transitions of the Sophora japonica seed lectin (SJL) were studied in detail using bioinformatics and biophysical tools. Homology model of the lectin displayed all the characteristics of the legume lectin monomer and the experimental observations correlated well with the structural information. In silico studies were performed by protein-ligand docking, calculating the respective binding energies and the residues involved in the interactions were derived from LigPlot(+) analysis. Fluorescence titrations showed three times higher affinity of T-antigen disaccharide than N-acetyl galactosamine (GalNAc) towards SJL indicating extended sugar binding site of the lectin. Thermodynamic parameters of T-antigen binding to SJL indicated the process to be endothermic and entropically driven while those of GalNAc showed biphasic process. SDS-PAGE showed post-translationally modified homotetrameric species of the lectin under native conditions. In presence of guanidine hydrochloride (0.5-5.0M), the tetramer first dissociated into dimers followed by unfolding of the protein as indicated by size exclusion chromatography, fluorescence and CD spectroscopy. Different structural rearrangements were observed during thermal denaturation of SJL at physiological pH 7.2, native pH 8.5 and molten globule inducing pH 1.0. Topological information revealed by solute quenching studies at respective pH indicated differential hydrophobic environment and charge density around tryptophan residues.

摘要

使用生物信息学和生物物理工具详细研究了槐豆种子凝集素(SJL)的功能和构象转变。凝集素的同源模型显示了豆科凝集素单体的所有特征,实验观察与结构信息很好地相关。通过蛋白质-配体对接进行了计算机模拟研究,计算了各自的结合能,并从 LigPlot(+)分析中得出了参与相互作用的残基。荧光滴定表明,T 抗原二糖对 SJL 的亲和力比 N-乙酰半乳糖胺(GalNAc)高三倍,表明凝集素具有扩展的糖结合位点。T 抗原与 SJL 结合的热力学参数表明该过程是吸热和熵驱动的,而 GalNAc 的参数则显示出两相过程。SDS-PAGE 显示在天然条件下,该凝集素是经过翻译后修饰的同源四聚体。在盐酸胍(0.5-5.0M)存在下,四聚体首先解离为二聚体,然后蛋白质展开,如尺寸排阻色谱、荧光和 CD 光谱所示。在生理 pH 7.2、天然 pH 8.5 和诱导变性球蛋白形成的 pH 1.0 下,SJL 的热变性过程中观察到不同的结构重排。在各自 pH 值下通过溶质猝灭研究揭示的拓扑信息表明色氨酸残基周围存在不同的疏水性环境和电荷密度。

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