Reineke U, Sabat R, Volk H D, Schneider-Mergener J
Institut für Medizinische Immunologie, Universitätsklinikum Charité, Humboldt-Universität zu Berlin, Germany.
Protein Sci. 1998 Apr;7(4):951-60. doi: 10.1002/pro.5560070412.
The discontinuous interleukin-10(IL-10)/interleukin-10 receptor (IL-10R) combining site was mapped using sets of overlapping peptides derived from both binding partners bound to continuous cellulose membranes. Low affinity binding of single regions of the discontinuous contact sites on IL-10 and IL-10R could be identified due to (1) high peptide density on the membrane support, (2) incubation with high protein concentrations, (3) indirect immunodetection of the ligates after electrotransfer onto polyvinylene difluoride membranes, and (4) use of highly overlapping peptide scans of different length (6-mers and 15-mers). The single binding regions identified for each protein species are separated in the protein sequences, but form continuous areas on the surface of IL-10 (X-ray structure) and IL-10R (computer model). Furthermore, four epitopes of neutralizing anti-IL-10 and anti-IL-10R antibodies were mapped and overlap with these binding regions. Soluble peptides (15- to 19-mers) each spanning one of the three identified IL-10-derived receptor binding regions displayed no significant affinity to IL-10R as expected, whereas a peptide (35-mer) comprising two of these regions had considerably higher binding activity. The data are consistent with a previously published computer model of the IL-10/IL-10R complex. This approach should be generally applicable for the mapping of non-linear protein-protein contact sites.
利用源自结合到连续纤维素膜上的两种结合伴侣的重叠肽组,绘制了不连续的白细胞介素-10(IL-10)/白细胞介素-10受体(IL-10R)结合位点。由于以下原因,可以鉴定出IL-10和IL-10R上不连续接触位点单个区域的低亲和力结合:(1)膜支持物上的高肽密度;(2)与高蛋白浓度孵育;(3)电转移到聚偏二氟乙烯膜上后对接合物进行间接免疫检测;(4)使用不同长度(6聚体和15聚体)的高度重叠肽扫描。为每种蛋白质鉴定出的单个结合区域在蛋白质序列中是分开的,但在IL-10(X射线结构)和IL-10R(计算机模型)的表面形成连续区域。此外,绘制了中和性抗IL-10和抗IL-10R抗体的四个表位,并与这些结合区域重叠。如预期的那样,分别跨越三个鉴定出的源自IL-10的受体结合区域之一的可溶性肽(15至19聚体)对IL-10R没有显著亲和力,而包含其中两个区域的肽(35聚体)具有相当高的结合活性。这些数据与先前发表的IL-10/IL-10R复合物计算机模型一致。这种方法通常应适用于非线性蛋白质-蛋白质接触位点的绘制。