Hardin J A
Proc Natl Acad Sci U S A. 1981 Jul;78(7):4562-5. doi: 10.1073/pnas.78.7.4562.
We designed this study to examine the relationship of cryoglobulins to immune complexes in sera of patients with rheumatic or infectious diseases. Polyethylene glycol was used to precipitate large proteins from normal serum and then was dialyzed away. The precipitated proteins were soluble in warm phosphate-buffered saline but at 4 degrees C they reversibly reprecipitated. As they reprecipitated, they selectively coprecipitated cold-soluble immune complexes. By NaDodSO4/polyacrylamide gel electrophoresis, these normal, nonimmunoglobulin cryoproteins were similar to the nonimmunoglobulin constituents of washed cryoimmunoglobulins from patients with rheumatic or infectious diseases. These findings suggest that cryoprecipitability is a property not of immune complexes themselves but of a group of large normal serum proteins. In inflammatory diseases, the concentrations of some of these proteins, responding as acute-phase reactants, may increase to the point where intermolecular attractive forces become prominent, particularly in the cold. Cold-augmented molecular aggregation between these nonimmunoglobulin proteins and immune complexes could then act to decrease their collective solubility and result in the cryoprecipitation of otherwise cold-soluble immune complexes.
我们开展这项研究,旨在探究风湿性或感染性疾病患者血清中冷球蛋白与免疫复合物之间的关系。使用聚乙二醇从正常血清中沉淀出大分子蛋白质,然后通过透析去除聚乙二醇。沉淀出的蛋白质可溶于温热的磷酸盐缓冲盐溶液,但在4℃时会可逆地再次沉淀。再次沉淀时,它们会选择性地共沉淀冷溶性免疫复合物。通过十二烷基硫酸钠/聚丙烯酰胺凝胶电泳发现,这些正常的非免疫球蛋白冷沉淀蛋白与风湿性或感染性疾病患者洗脱出的冷免疫球蛋白中的非免疫球蛋白成分相似。这些发现表明,冷沉淀性并非免疫复合物本身的特性,而是一组正常大分子血清蛋白的特性。在炎症性疾病中,其中一些作为急性期反应物的蛋白质浓度可能会升高,直至分子间吸引力变得显著,尤其是在低温情况下。这些非免疫球蛋白蛋白质与免疫复合物之间的冷增强分子聚集,可能会降低它们的总体溶解度,导致原本冷溶性的免疫复合物发生冷沉淀。