Wieslander J, Heinegård D
Biochem J. 1979 Apr 1;179(1):35-45. doi: 10.1042/bj1790035.
Antibodies were raised in rabbits by injection of cartilage proteoglycan monomers, isolated hyaluronic acid-binding region, polysaccharide-peptides prepared by trypsin digestion of proteoglycans and link-protein. The rabbits injected with the proteoglycan monomers made antibodies reacting with the intact proteoglycan. The antiserum contained antibodies specific for, and also reacting with, the isolated hyaluronic acid-binding region and the keratan sulphate-rich region. In addition there were probably antibodies reacting with other structures of the proteoglycan monomer. When isolated hyaluronic acid-binding region was used for immunization the antibodies obtained reacted specifically with the hyaluronic acid-binding region. The antibodies obtained from rabbits immunized with the polysaccharide-peptides reacted with the proteoglycan monomers and showed a reaction identical with that of the chondroitin sulphate-peptides isolated after trypsin digestion of proteoglycans. The antibodies prepared with the link-protein as the antigen reacted only with the link-protein and not with any preparation from the proteoglycan monomer. Neither did any of the antisera raised against the proteoglycan monomer or its substructures react with the link-protein. Separately it was shown that the peptide 'maps' prepared from trypsin digests of the link-protein and the hyaluronic acid-binding region were different. Therefore it appears that the link-protein is not structurally related to the proteoglycan or the hyaluronic acid-binding region. Digestion of proteoglycan monomers or isolated hyaluronic acid-binding region with trypsin did not destroy the antigenic sites of the hyaluronic acid-binding region. In contrast trypsin digests of previously reduced and alkylated preparations did not react with the anti-(hyaluronic acid-binding region). The trypsin digests, however, reacted with both the antibodies directed against the chondroitin sulphate-peptides and those against the keratan sulphate-peptides. Trypsin digestion of the link-proteins destroyed the antigenic site and the reactivity with the antibodies. By combining immunoassay of proteoglycan preparations before and after trypsin digestion it is feasible to quantitatively determine its substructures by using the antisera described above.
通过向兔子注射软骨蛋白聚糖单体、分离出的透明质酸结合区、经胰蛋白酶消化蛋白聚糖制备的多糖肽以及连接蛋白来产生抗体。注射蛋白聚糖单体的兔子产生了与完整蛋白聚糖发生反应的抗体。抗血清中含有对分离出的透明质酸结合区和富含硫酸角质素的区域具有特异性且与之发生反应的抗体。此外,可能还有与蛋白聚糖单体其他结构发生反应的抗体。当使用分离出的透明质酸结合区进行免疫时,所获得的抗体与透明质酸结合区发生特异性反应。用多糖肽免疫兔子所获得的抗体与蛋白聚糖单体发生反应,并且与经胰蛋白酶消化蛋白聚糖后分离出的硫酸软骨素肽所产生的反应相同。以连接蛋白作为抗原制备的抗体仅与连接蛋白发生反应,而不与蛋白聚糖单体的任何制剂发生反应。针对蛋白聚糖单体或其亚结构产生的任何抗血清也均不与连接蛋白发生反应。分别表明,由连接蛋白和透明质酸结合区的胰蛋白酶消化产物制备的肽“图谱”是不同的。因此,似乎连接蛋白在结构上与蛋白聚糖或透明质酸结合区无关。用胰蛋白酶消化蛋白聚糖单体或分离出的透明质酸结合区不会破坏透明质酸结合区的抗原位点。相比之下,先前还原和烷基化制剂的胰蛋白酶消化产物不与抗(透明质酸结合区)发生反应。然而,胰蛋白酶消化产物与针对硫酸软骨素肽和硫酸角质素肽的抗体均发生反应。胰蛋白酶消化连接蛋白会破坏抗原位点以及与抗体的反应性。通过结合胰蛋白酶消化前后蛋白聚糖制剂的免疫测定,利用上述抗血清定量测定其亚结构是可行的。