Kay M M, Bosman G J, Lawrence C
Department of Medicine, Texas A & M University, Temple 76504.
Proc Natl Acad Sci U S A. 1988 Jan;85(2):492-6. doi: 10.1073/pnas.85.2.492.
Band 3 is the major anion transport polypeptide of erythrocytes. It appears to be the binding site of several glycolytic enzymes. Structurally, band 3 is the major protein spanning the erythrocyte membrane and connects the plasma membrane to band 2.1, which binds to the cytoskeleton. In the present study, we report an alteration of band 3 molecule that is associated with the following changes: erythrocyte shape change from discoid to "thorny cells" (acanthocytes), restriction of rotational diffusion of band 3 in the membrane, increase in anion transport, and decrease in the number of high-affinity ankyrin-binding sites. Changes in erythrocyte IgG binding, glyceraldehyde-3-phosphate dehydrogenase, fluorescence polarization (indicative of membrane fluidity), and other membrane proteins as determined by polyacrylamide gel electrophoresis were not detected. Cells containing the altered band 3 polypeptide were obtained from individuals with abnormal erythrocyte morphology. Two-dimensional peptide maps revealed differences in the Mr 17,000 anion transport segment of band 3 consistent with additions of tyrosines or tyrosine-containing peptides. The data suggest that (i) this alteration of band 3 does not result in accelerated aging as does cleavage and (ii) structural changes in the anion transport region result in alterations in anion transport.
带3是红细胞主要的阴离子转运多肽。它似乎是几种糖酵解酶的结合位点。从结构上看,带3是跨越红细胞膜的主要蛋白质,它将质膜与结合细胞骨架的带2.1相连。在本研究中,我们报道了带3分子的一种改变,这种改变与以下变化相关:红细胞形状从盘状变为“棘状细胞”(棘形红细胞),带3在膜中的旋转扩散受限,阴离子转运增加,以及高亲和力锚蛋白结合位点数量减少。未检测到红细胞免疫球蛋白G结合、甘油醛-3-磷酸脱氢酶、荧光偏振(表明膜流动性)以及聚丙烯酰胺凝胶电泳测定的其他膜蛋白的变化。含有改变的带3多肽的细胞取自红细胞形态异常的个体。二维肽图显示带3的17000道尔顿阴离子转运片段存在差异,这与酪氨酸或含酪氨酸肽段的添加一致。数据表明:(i)带3的这种改变不会像裂解那样导致加速衰老;(ii)阴离子转运区域的结构变化导致阴离子转运改变。