Marine Biotecnology Laboratory - BioMar-Lab, Departament of Fishing Engineering S/N, Bloco 871, 60440-970, Fortaleza-CE, Brazil.
Integrated Biomolecules Laboratory - LIBS, Departament of Pathology and Legal Medicine, Federal University of Ceará S/N, Monsenhor Furtado, 60430-160, Fortaleza, CE, Brazil.
Biochimie. 2023 Nov;214(Pt B):165-175. doi: 10.1016/j.biochi.2023.07.003. Epub 2023 Jul 10.
Lectins presents the ability to interact with glycans and trigger varied responses, including the inhibition of the development of various pathogens. Structural studies of these proteins are essential to better understand their functions. In marine sponges, so far only a few lectins have their primary structures completely determined. Thus, the objective of this work was to structurally characterize and evaluate antibacterial potential, in association with different antibiotics, of the lectin isolated from the marine sponge Aplysina lactuta (ALL). ALL is a homotetramer of 60 kDa formed by four 15 kDa-subunits. The lectin showed affinity only for the glycoproteins fetuin, asialofetuin, mucin type III, and bovine submaxillary mucin type I. The complete amino acid sequences of two isoforms of ALL, named ALL-a and ALL-b, were determined by a combination of Edman degradation and overlapped peptides sequenced by tandem mass spectrometry. ALL-a and ALL-b have 144 amino acids with molecular masses of 15,736 Da and 15,985 Da, respectively. Both structures contain conserved residues typical of the galectin family. ALL is a protein with antibacterial potential, when in association with ampicillin and oxacillin the lectin potentiates its antibiotic effect, included Methicillin-resistant Staphylococcus strains. Thus, ALL shows to be a molecule with potential for the development of new antibacterial drugs.
凝集素具有与糖结合并引发各种反应的能力,包括抑制各种病原体的发展。这些蛋白质的结构研究对于更好地了解它们的功能至关重要。在海洋海绵中,到目前为止,只有少数几种凝集素的一级结构完全确定。因此,这项工作的目的是对从海洋海绵 Aplysina lactuta (ALL) 中分离出的凝集素进行结构表征和评估其与不同抗生素联合的抗菌潜力。ALL 是由四个 15 kDa 亚基组成的 60 kDa 同源四聚体。该凝集素仅对糖蛋白胎球蛋白、去唾液酸胎球蛋白、III 型粘蛋白和牛颌下腺粘蛋白 I 型具有亲和力。通过 Edman 降解和串联质谱测序的重叠肽组合,确定了两种 ALL 同工型 ALL-a 和 ALL-b 的完整氨基酸序列。ALL-a 和 ALL-b 各有 144 个氨基酸,分子量分别为 15736 Da 和 15985 Da。两者的结构都包含典型的半乳凝集素家族保守残基。ALL 具有抗菌潜力,当与氨苄西林和苯唑西林联合使用时,该凝集素增强了其抗生素作用,包括耐甲氧西林的金黄色葡萄球菌菌株。因此,ALL 显示出作为开发新型抗菌药物的潜在分子。