Faltynek C R, Princler G L, Schwabe M
Biological Carcinogenesis and Development Program, Program Resources, Inc./DynCorp, Frederick, MD.
Cytokine. 1991 Nov;3(6):627-35. doi: 10.1016/1043-4666(91)90490-5.
The interaction between human interferon (IFN)-alpha or IFN-beta with its receptor was originally described as the binding to a single class of high-affinity receptors. However, more recently, biphasic Scatchard plots as well as multiple IFN-alpha receptor cross-linked complexes have been reported. In this study using the Daudi B lymphoblastoid cell line, two primary IFN-alpha receptor cross-linked complexes with apparent Mr of 115 and 135 kilodaltons (kDa) were obtained. Both complexes were observed under a variety of cross-linking conditions, including the addition of a mixture of protease inhibitors throughout the binding reaction and solubilization of the cells. These two complexes appear to be caused by the binding and cross-linking of 125I-rIFN-alpha A to two separate proteins because we also observed two IFN-alpha binding proteins using a ligand-blotting technique. At low concentrations of 125I-rIFN-alpha A, it was found that the intensity of the signal in the 135-kDa cross-linked complex was greater than that of the 115-kDa complex. Addition of increasing concentrations of unlabeled rIFN-alpha A to a 4 degrees C binding reaction reversed the ratio in intensities of the two complexes. Moreover, after pretreatment of the cells at 37 degrees C with low concentrations of unlabeled rIFN-alpha A, there was preferential down-regulation of both the 135-kDa complex and the higher affinity binding component of the biphasic Scatchard plot. These results suggest that the 135-kDa complex represents the binding of 125I-rIFN-alpha A to a protein having higher affinity for IFN than the protein that gives rise to the 115-kDa complex.(ABSTRACT TRUNCATED AT 250 WORDS)
人干扰素(IFN)-α或IFN-β与其受体之间的相互作用最初被描述为与一类单一的高亲和力受体结合。然而,最近有报道称出现了双相Scatchard图以及多种IFN-α受体交联复合物。在本研究中,使用Daudi B淋巴母细胞系,获得了两种主要的IFN-α受体交联复合物,其表观分子量分别为115和135千道尔顿(kDa)。在各种交联条件下都观察到了这两种复合物,包括在整个结合反应中添加蛋白酶抑制剂混合物以及细胞的溶解。这两种复合物似乎是由125I-rIFN-αA与两种不同蛋白质的结合和交联引起的,因为我们使用配体印迹技术也观察到了两种IFN-α结合蛋白。在低浓度的125I-rIFN-αA时,发现135-kDa交联复合物中的信号强度大于115-kDa复合物中的信号强度。向4℃结合反应中添加浓度不断增加的未标记rIFN-αA可逆转两种复合物强度的比例。此外,用低浓度的未标记rIFN-αA在37℃对细胞进行预处理后,135-kDa复合物和双相Scatchard图中高亲和力结合成分均出现优先下调。这些结果表明,135-kDa复合物代表125I-rIFN-αA与一种对IFN亲和力高于产生115-kDa复合物的蛋白质的结合。(摘要截短于250字)