Departamento de Bioquímica e Biologia Molecular, Universidade Federal do Ceará, Av. Mister Hull s/n, Bloco 907, Box 6043, 60440-970, Fortaleza, Ceará, Brazil.
Int J Biochem Cell Biol. 2013 Apr;45(4):807-15. doi: 10.1016/j.biocel.2013.01.012. Epub 2013 Jan 23.
Lectins from Diocleinae subtribe belong to the family of legume lectins and are characterized by high identity between their amino acids sequences. It has been shown that punctual differences in amino acid sequences, such as one single amino acid or an alternative conformation, represent changes in biological activities caused by these lectins. Therefore, a more detailed understanding of three-dimensional structures of these proteins is essential for accurate analyzing the relationship between structure and function. In this study lectins purified from the seeds of Dioclea violacea (DVL) and Dioclea rostrata (DRL) were compared with regard to crystal structure and vasorelaxant properties. Differences in structure of lectins were found to be reflected in differences in vasorelaxant effects based on their high specificity and selectivity for cell glycans. Binding activity was related to the position of specific residues in the carbohydrate recognition domain (CRD). DVL complexed structure was solved by X-ray crystallography and was compared to native DVL and DRL. Therefore, DVL was co-crystallized with X-Man, and a molecular modeling with X-Man complexed with DVL was done to compare the complexed and native forms adjusted fit. The relatively narrow and deep CRD in DVL promotes little interaction with carbohydrates; in contrast, the wider and shallower CRD in DRL favors interaction. This seems to explain differences in the level of relaxation induced by DVL (43%) and DRL (96%) in rat aortic rings.
来自 Diocleinae 亚族的凝集素属于豆科凝集素家族,其氨基酸序列高度一致。已经表明,氨基酸序列中的点突变,例如单个氨基酸或替代构象,代表这些凝集素引起的生物活性变化。因此,更详细地了解这些蛋白质的三维结构对于准确分析结构与功能之间的关系至关重要。在这项研究中,比较了来自 Dioclea violacea(DVL)和 Dioclea rostrata(DRL)种子的凝集素的晶体结构和血管舒张特性。发现凝集素结构上的差异反映在其对细胞糖的高特异性和选择性基础上的血管舒张作用的差异上。结合活性与碳水化合物识别域(CRD)中特定残基的位置有关。通过 X 射线晶体学解决了 DVL 的复合物结构,并与天然 DVL 和 DRL 进行了比较。因此,DVL 与 X-Man 共结晶,并对与 X-Man 复合的 DVL 进行了分子建模,以比较复合物和天然形式的调整拟合。DVL 中相对较窄和深的 CRD 促进与碳水化合物的相互作用较小;相比之下,DRL 中较宽和较浅的 CRD 有利于相互作用。这似乎可以解释 DVL(43%)和 DRL(96%)在大鼠主动脉环中诱导的松弛水平的差异。