Kay M M, Bosman G J, Johnson G J, Beth A H
Department of Medical Microbiology and Immunology, College of Medicine, Texas A&M University, Temple 76504.
Blood Cells. 1988;14(1):275-95.
As part of our systematic ongoing studies of mechanisms of cellular and molecular aging, we developed a "biochemical profile" of senescent human red cells. This "red cell aging" panel allows us to assess functional red cell age independent of chronologic age. The panel used to obtain this profile includes IgG binding, phagocytosis, enzyme activity, anion transport, ankyrin binding, and immunoblotting with antibodies to band 3. We used this panel to compare the biochemical profile of glucose 6-phosphate dehydrogenase-deficient and hemoglobin Köln cells containing high molecular weight protein polymers or hemoglobin precipitates with that of normal senescent cells. We found no evidence in support of the concept that aggregation of band 3 plays a role in the mechanism for generating senescent cell antigen. Observations such as these support the hypothesis that degradation of band 3, rather than aggregation is a critical event in IgG binding and normal erythrocyte aging.
作为我们正在进行的细胞和分子衰老机制系统研究的一部分,我们建立了衰老人类红细胞的“生化图谱”。这个“红细胞衰老”检测组使我们能够独立于实际年龄来评估功能性红细胞年龄。用于获取该图谱的检测组包括IgG结合、吞噬作用、酶活性、阴离子转运、锚蛋白结合以及用抗带3抗体进行免疫印迹。我们使用这个检测组比较了葡萄糖6 - 磷酸脱氢酶缺乏症患者以及含有高分子量蛋白质聚合物或血红蛋白沉淀的血红蛋白科隆细胞与正常衰老细胞的生化图谱。我们没有发现证据支持带3聚集在衰老细胞抗原产生机制中起作用这一概念。诸如此类的观察结果支持了这样一种假说,即带3的降解而非聚集是IgG结合和正常红细胞衰老中的关键事件。