Sano T, Cantor C R
Department of Genetics and Development, College of Physicians and Surgeons, Columbia University, New York, New York 10032.
J Biol Chem. 1990 Feb 25;265(6):3369-73.
We describe the cooperativity in the biotin binding of streptavidin. We have developed an electrophoretic method which can separate streptavidin molecules with bound biotin from those without biotin. In 6 M urea, the electrophoretic mobility of streptavidin in polyacrylamide gels becomes significantly faster upon biotin binding. When streptavidin was titrated with biotin, only two major bands were observed on the gel, consisting of streptavidin molecules without bound biotin and those saturated with biotin. The change in mobility is due partly to the negative charge of the bound biotin, but it must reflect conformational changes of the protein molecule associated with biotin binding. Gel filtration chromatography showed that the streptavidin molecule dissociates into two subunit dimers in the presence of 6 M urea. These results suggest that the biotin binding by the streptavidin subunit dimer is cooperative and that some communication must exist between the two subunits.
我们描述了链霉亲和素生物素结合中的协同性。我们开发了一种电泳方法,该方法可以将结合了生物素的链霉亲和素分子与未结合生物素的分子分开。在6 M尿素中,链霉亲和素在聚丙烯酰胺凝胶中的电泳迁移率在结合生物素后显著加快。当用生物素滴定链霉亲和素时,在凝胶上仅观察到两条主要条带,分别由未结合生物素的链霉亲和素分子和生物素饱和的分子组成。迁移率的变化部分归因于结合生物素的负电荷,但它必定反映了与生物素结合相关的蛋白质分子的构象变化。凝胶过滤色谱显示,在6 M尿素存在下,链霉亲和素分子解离成两个亚基二聚体。这些结果表明,链霉亲和素亚基二聚体的生物素结合是协同性的,并且两个亚基之间必定存在某种通讯。