Jiménez Marta, Sáiz José L, André Sabine, Gabius Hans-J, Solís Dolores
Instituto de Química Fisica Rocasolano, CSIC, 28006 Madrid, Spain.
Glycobiology. 2005 Dec;15(12):1386-95. doi: 10.1093/glycob/cwj020. Epub 2005 Jul 21.
The biological activity of a lectin is influenced by its quaternary structure. Viscumin is special among the family members of toxic AB-type plant lectins, because it triggers mitogenicity, toxicity, and agglutination. Its activity profile is dependent on the concentration, motivating a thorough inspection of the status of quaternary structure. Over a broad range of protein concentrations (0.01-25 mg/mL), viscumin occurs as a dimer. At high concentrations, the solutions exhibited nonideality, self-association, and polydispersity in sedimentation equilibrium and velocity experiments caused by irreversible aggregation. Calculation of viscumin's overall shape based on sedimentation velocity data resulted in an elongated dimer form resembling that of crystallized agglutinin. Appearance of monomers was restricted to concentrations in the submicrogram/mL level, as demonstrated by fast protein liquid chromatography gel-filtration analysis. To shift the equilibrium to the monomer for comparative cell biological assays, we performed chemical modification under conditions protecting the lectin activity. Citraconylation was effective to destabilize the dimer. Binding studies by fluorescence-activated cell scan analysis revealed a reduction in cell association upon modification and a tendency for increased sensitivity towards haptenic inhibitors at microg/mL concentrations. Nonetheless, growth inhibition continued to be potent for the ricin-like monomer despite reduced extent of binding. Occurrence of a concentration-dependent monomer/dimer equilibrium appears to achieve the same objectives as the development of two separate protein entities in Ricinus communis, an alternative strategy to emergence of a monomeric toxin, and cell cross-linking dimeric agglutinin.
凝集素的生物活性受其四级结构影响。相思豆毒素在有毒AB型植物凝集素家族成员中较为特殊,因为它能引发有丝分裂原性、毒性和凝集作用。其活性特征取决于浓度,这促使人们深入研究其四级结构状态。在较宽的蛋白质浓度范围(0.01 - 25 mg/mL)内,相思豆毒素以二聚体形式存在。在高浓度时,溶液在沉降平衡和速度实验中表现出非理想性、自缔合以及由不可逆聚集导致的多分散性。根据沉降速度数据计算相思豆毒素的整体形状,得到一种类似结晶凝集素的细长二聚体形式。快速蛋白质液相色谱凝胶过滤分析表明,单体的出现仅限于亚微克/毫升水平的浓度。为了在比较细胞生物学测定中将平衡转移到单体状态,我们在保护凝集素活性的条件下进行了化学修饰。柠康酰化有效地使二聚体不稳定。荧光激活细胞扫描分析的结合研究表明,修饰后细胞结合减少,并且在微克/毫升浓度下对半抗原抑制剂的敏感性有增加的趋势。尽管如此,尽管结合程度降低,但蓖麻毒素样单体的生长抑制作用仍然很强。浓度依赖性单体/二聚体平衡的出现似乎与蓖麻中两种独立蛋白质实体的形成达到相同目的,这是单体毒素出现的另一种策略,以及细胞交联二聚体凝集素。