Loeb J A, Drickamer K
Department of Biochemistry and Molecular Biology, University of Chicago, Illinois 60637.
J Biol Chem. 1988 Jul 15;263(20):9752-60.
Limited proteolysis, gel filtration, and circular dichroism have been used to identify at least three distinct conformational states of a proteolytic fragment containing the ligand-binding domain of the chicken receptor for endocytosis of glycoproteins. Differences in the ligand-binding activity of intact receptor brought about by changing Ca2+ concentrations and pH values can be correlated with different physical states of the binding domain present under similar conditions. An active, ligand-binding state can be detected at either pH 7.8 or 5.4, but 10-fold higher concentrations of Ca2+ are required to stabilize this state at the lower pH. In all cases, the dependence on Ca2+ concentration is second-order, suggesting that two Ca2+ ions are bound to each domain. These studies demonstrate an interdependence between the effects of Ca2+ concentration and pH on both ligand-binding activity and receptor conformation, which is important to consider when describing the binding and dissociation of ligand during endocytosis.
有限蛋白酶解、凝胶过滤和圆二色性已被用于鉴定一种蛋白水解片段的至少三种不同构象状态,该片段包含鸡糖蛋白内吞受体的配体结合结构域。通过改变Ca2+浓度和pH值引起的完整受体配体结合活性的差异,可与相似条件下存在的结合结构域的不同物理状态相关联。在pH 7.8或5.4时均可检测到活性配体结合状态,但在较低pH值下需要高10倍的Ca2+浓度来稳定该状态。在所有情况下,对Ca2+浓度的依赖性都是二级的,表明每个结构域结合两个Ca2+离子。这些研究证明了Ca2+浓度和pH值对配体结合活性和受体构象的影响之间存在相互依赖性,这在描述内吞过程中配体的结合和解离时是需要考虑的重要因素。