Pinto-Junior Vanir Reis, Santiago Mayara Queiroz, Nobre Camila Bezerra, Osterne Vinicius Jose Silva, Leal Rodrigo Bainy, Cajazeiras Joao Batista, Lossio Claudia Figueiredo, Rocha Bruno Anderson Matias, Martins Maria Gleiciane Queiroz, Nobre Clareane Avelino Simplicio, Silva Mayara Torquato Lima, Nascimento Kyria Santiago, Cavada Benildo Sousa
Universidade Federal do Ceara (UFC), Fortaleza, Ceara, Brazil.
Faculdade de Medicina Estácio de Juazeiro do Norte (FMJ), Juazeiro do Norte, Ceara, Brazil.
Arch Biochem Biophys. 2017 Sep 15;630:27-37. doi: 10.1016/j.abb.2017.07.013. Epub 2017 Jul 25.
The Pisum arvense lectin (PAL), a legume protein belonging to the Vicieae tribe, is capable of specific recognition of mannose, glucose and its derivatives without altering its structure. In this work, the three-dimensional structure of PAL was determined by X-ray crystallography and studied in detail by a combination of molecular docking and molecular dynamics (MD). Crystals belonging to monoclinic space group P2 were grown by the vapor diffusion method at 293 K. The structure was solved at 2.16 Å and was similar to that of other Vicieae lectins. The structure presented R and R of 17.04% and 22.08%, respectively, with all acceptable geometric parameters. Molecular docking was performed to analyze interactions of the lectin with monosaccharides, disaccharides and high-mannose N-glycans. PAL demonstrated different affinities on carbohydrates, depending on bond orientation and glycosidic linkage present in ligands. Furthermore, the lectin interacted with representative N-glycans in a manner consistent with the biological effects described for Vicieae lectins. Carbohydrate-recognition domain (CRD) in-depth analysis was performed by MD, describing the behavior of CRD residues in complex with ligand, stability, flexibility of the protein over time, CRD volume and topology. This is a first report of its kind for a lectin of the Vicieae tribe.
田野豌豆凝集素(PAL)是一种属于巢菜族的豆科蛋白质,能够特异性识别甘露糖、葡萄糖及其衍生物,且不改变其结构。在本研究中,通过X射线晶体学确定了PAL的三维结构,并结合分子对接和分子动力学(MD)进行了详细研究。采用气相扩散法在293 K下生长出属于单斜空间群P2的晶体。该结构在2.16 Å分辨率下解析得到,与其他巢菜族凝集素的结构相似。该结构的R因子和R自由因子分别为17.04%和22.08%,所有几何参数均符合要求。进行分子对接以分析凝集素与单糖、二糖和高甘露糖型N-聚糖的相互作用。PAL对碳水化合物表现出不同的亲和力,这取决于配体中存在的键取向和糖苷键连接。此外,该凝集素与代表性N-聚糖的相互作用方式与巢菜族凝集素所描述的生物学效应一致。通过MD对碳水化合物识别结构域(CRD)进行了深入分析,描述了CRD残基与配体复合物中的行为、蛋白质随时间的稳定性、灵活性、CRD体积和拓扑结构。这是关于巢菜族凝集素的此类首次报道。