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Characterization of immune complexes of idiotypic catalytic and anti-idiotypic inhibitory antibodies in plasma of type 1 diabetic subjects.

机译:1型糖尿病患者血浆中独特型催化和抗独特型抑制抗体免疫复合物的表征。

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An increase in proteolytic activity is an early common feature of diabetes, and is associated with the development of vascular complications. We performed an extensive proteomic investigation on plasma of type 1 diabetic subjects to discover why some of them apparently lacked any measurable proteolytic activity. Activity was found enclosed in immune complexes in which Fab/(Fab)(2) displayed a serine-like catalytic activity. Disaggregation of complexes by means of Protein G affinity chromatography led to the separation of free subunits of Fab, showing a specific amidolytic activity, from Fab that displayed activity on casein and remained closely complexed with whole IgG. On both types of Fab the serine catalytic site appeared to be the same, being located in close vicinity to the antigen-binding site. The distinct substrate specificity was due to the different conformation adopted by the catalytic site depending on the structure of Fab/(Fab)(2), whether in complexes or as free subunits. Catalytic Fab/(Fab)(2) originated from idiotypic antibodies developed against Grp94, identified as the primary antigen covalently complexed with Fab. Whole IgG present in immune complexes were instead mostly formed with anti-idiotypic antibodies developed against the adduct of Fab/(Fab)(2) with Grp94, and were responsible for blocking any catalytic activity. In dot-blot experiments with native Grp94, we confirmed that in any diabetic plasma circulated anti-Grp94, idiotypic, and anti-idiotypic antibodies.
机译:蛋白水解活性的增加是糖尿病的早期常见特征,并且与血管并发症的发展有关。我们对1型糖尿病受试者的血浆进行了广泛的蛋白质组学研究,以发现为什么其中一些人显然缺乏任何可测量的蛋白水解活性。发现活性被封闭在其中Fab /(Fab)(2)显示出丝氨酸样催化活性的免疫复合物中。通过蛋白G亲和色谱法分解复合物导致从Fab上分离出Fab的游离亚基,其显示出特定的酰胺分解活性,该Fab对酪蛋白表现出活性并且仍与完整IgG紧密复合。在两种类型的Fab上,丝氨酸催化位点似乎是相同的,位于紧邻抗原结合位点的位置。独特的底物特异性是由于取决于Fab /(Fab)(2)结构的催化位点采用的构象不同,无论是复合物还是游离亚基。催化Fab /(Fab)(2)源自针对Grp94开发的独特型抗体,该抗体被鉴定为与Fab共价复合的主要抗原。相反,免疫复合物中存在的完整IgG主要由针对Fab /(Fab)(2)与Grp94加合物形成的抗独特型抗体形成,并负责阻断任何催化活性。在使用天然Grp94进行的斑点实验中,我们证实了在任何糖尿病血浆中都存在抗Grp94,独特型和抗独特型抗体。

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