Sartim Marco A, Pinheiro Matheus P, de Pádua Ricardo A P, Sampaio Suely V, Nonato M Cristina
Departamento de Análises Clínicas, Toxicológicas e Bromatológicas, Laboratório de Toxinologia, Faculdade de Ciências Farmacêuticas de Ribeirão Preto, 14040-903, Ribeirão Preto, S.P., Brazil.
Laboratório de Cristalografia de Proteínas, Faculdade de Ciências Farmacêuticas de Ribeirão Preto, 14040-903, Ribeirão Preto, S.P., Brazil.
Toxicon. 2017 Feb;126:59-69. doi: 10.1016/j.toxicon.2016.12.007. Epub 2016 Dec 19.
BJcuL is a snake venom galactoside-binding lectin (SVgalL) isolated from Bothrops jararacussu and is involved in a wide variety of biological activities including triggering of pro-inflammatory response, disruption of microbial biofilm structure and induction of apoptosis. In the present work, we determined the crystallographic structure of BJcuL, the first holo structure of a SVgalL, and introduced the fluorescence-based thermal stability assay (Thermofluor) as a tool for screening and characterization of the binding mechanism of SVgalL ligands. BJcuL structure revealed the existence of a porous and flexible decameric arrangement composed of disulfide-linked dimers related by a five-fold symmetry. Each monomer contains the canonical carbohydrate recognition domain, a calcium ion required for BJcuL lectinic activity and a sodium ion required for protein stabilization. BJcuL thermostability was found to be induced by calcium ion and galactoside sugars which exhibit hyperbolic saturation profiles dependent on ligand concentration. Serendipitously, the gentamicin group of aminoglycoside antibiotics (gAGAs) was also identified as BJcuL ligands. On contrast, gAGAs exhibited a sigmoidal saturation profile compatible with a cooperative mechanism of binding. Thermofluor, hemagglutination inhibition assay and molecular docking strategies were used to identify a distinct binding site in BJcuL localized at the dimeric interface near the fully conserved intermolecular Cys86-Cys86 disulfide bond. The hybrid approach used in the present work provided novel insights into structural behavior and functional diversification of SVgaLs.
BJcuL是一种从巴西矛头蝮蛇毒液中分离出的半乳糖苷结合凝集素(SVgalL),参与多种生物活性,包括引发促炎反应、破坏微生物生物膜结构和诱导细胞凋亡。在本研究中,我们确定了BJcuL的晶体结构,这是SVgalL的首个全结构,并引入了基于荧光的热稳定性测定法(Thermofluor)作为筛选和表征SVgalL配体结合机制的工具。BJcuL结构揭示了一种由通过五重对称相关的二硫键连接的二聚体组成的多孔且灵活的十聚体排列。每个单体包含典型的碳水化合物识别结构域、BJcuL凝集活性所需的钙离子和蛋白质稳定所需的钠离子。发现钙离子和半乳糖苷糖可诱导BJcuL的热稳定性,它们表现出依赖于配体浓度的双曲线饱和曲线。偶然地,氨基糖苷类抗生素(gAGAs)的庆大霉素基团也被鉴定为BJcuL配体。相比之下,gAGAs表现出与协同结合机制相符的S形饱和曲线。使用Thermofluor、血凝抑制测定法和分子对接策略来确定BJcuL中一个独特的结合位点,该位点位于完全保守的分子间Cys86-Cys86二硫键附近的二聚体界面处。本研究中使用的混合方法为SVgaLs的结构行为和功能多样化提供了新的见解。