Arruda Francisco Vassiliepe Sousa, Melo Arthur Alves, Vasconcelos Mayron Alves, Carneiro Romulo Farias, Barroso-Neto Ito Liberato, Silva Suzete Roberta, Pereira-Junior Francisco Nascimento, Nagano Celso Shiniti, Nascimento Kyria Santiago, Teixeira Edson Holanda, Saker-Sampaio Silvana, Sousa Cavada Benildo, Sampaio Alexandre Holanda
Integrated Laboratory of Biomolecules (LIBS-BioMol Group), Department of Pathology and Legal Medicine, Federal University of Ceará, 62042-280 Fortaleza, CE, Brazil.
Laboratory of Biologically Actives Molecules, Department of Biochemistry and Molecular Biology, Federal University of Ceará, 60440-970 Fortaleza, CE, Brazil.
Biomed Res Int. 2013;2013:154542. doi: 10.1155/2013/154542. Epub 2013 Nov 27.
Lectins are sugar-binding proteins widely distributed in nature with many biological functions. Although many lectins have a remarkable biotechnological potential, some of them can be cytotoxic. Thus, the aim of this study was to assess the toxicity of five lectins, purified from seeds of different species of Canavalia genus. In order to determine the toxicity, assays with Artemia nauplii were performed. In addition, a fluorescence assay was carried out to evaluate the binding of lectins to Artemia nauplii. In order to verify the relationship between the structure of lectins and their cytotoxic effect, structural analysis was carried out to evaluate the volume of the carbohydrate recognition domain (CRD) of each lectin. The results showed that all lectins exhibited different toxicities and bound to a similar area in the digestive tract of Artemia nauplii. Concerning the structural analysis, differences in spatial arrangement and volume of CRD may explain the variation of the toxicity exhibited by each lectin. To this date, this is the first study that establishes a link between toxicity and structure of CRD from Diocleinae lectins.
凝集素是一类广泛分布于自然界的糖结合蛋白,具有多种生物学功能。尽管许多凝集素具有显著的生物技术潜力,但其中一些可能具有细胞毒性。因此,本研究的目的是评估从刀豆属不同物种种子中纯化得到的五种凝集素的毒性。为了确定毒性,进行了卤虫无节幼体试验。此外,还进行了荧光测定以评估凝集素与卤虫无节幼体的结合。为了验证凝集素结构与其细胞毒性作用之间的关系,进行了结构分析以评估每种凝集素的碳水化合物识别结构域(CRD)的体积。结果表明,所有凝集素均表现出不同的毒性,并与卤虫无节幼体消化道中的相似区域结合。关于结构分析,CRD的空间排列和体积差异可能解释了每种凝集素所表现出的毒性变化。迄今为止,这是第一项建立双豆亚科凝集素毒性与CRD结构之间联系的研究。