Yi S J, Liu S C, Derick L H, Murray J, Barker J E, Cho M R, Palek J, Golan D E
Department of Biomedical Research, St. Elizabeth's Medical Center of Boston, Tufts University School of Medicine, Boston, Massachusetts, USA.
Biochemistry. 1997 Aug 5;36(31):9596-604. doi: 10.1021/bi9704966.
The role of ankyrin in the formation and stabilization of the spectrin-based skeletal meshwork and of band 3 oligomers was studied by characterizing, in nb/nb mouse red cells, the effect of ankyrin deficiency on skeletal ultrastructure, band 3-skeleton associations, and band 3 oligomeric states. Despite severe ankyrin deficiency, nb/nb mouse red cell skeletal components formed a relatively uniform two-dimensional hexagonal array of junctional complexes cross-linked by spectrin tetramers. Treatment of nb/nb ghosts with the nonionic detergent C12E8 (octaethylene glycol n-dodecyl monoether) resulted in nearly complete extraction of band 3. The extracted band 3 was present exclusively as band 3 dimers. Fluorescence photobleaching recovery and polarized fluorescence depletion measurements showed increases in the laterally (33% vs 10%) and rotationally (90% vs 76%) mobile fractions of band 3 in intact nb/nb compared to control red cells. The rotational correlation time of the major fraction of band 3 molecules was 10-fold shorter in nb/nb compared to control red cells, indicating a significant relaxation of rotational constraints in nb/nb cells. These data suggest that, although ankyrin plays a major role in strengthening the attachment of the skeleton to the membrane bilayer, ankyrin is not required for the formation of a stable two-dimensional spectrin-based skeleton. The absence of band 3 tetramers in the membrane of ankyrin-deficient red cells suggests that ankyrin is required for the formation of stable band 3 tetramers.
通过在nb/nb小鼠红细胞中表征锚蛋白缺乏对骨骼超微结构、带3-骨架关联以及带3寡聚体状态的影响,研究了锚蛋白在基于血影蛋白的骨骼网络和带3寡聚体的形成与稳定中的作用。尽管存在严重的锚蛋白缺乏,nb/nb小鼠红细胞骨骼成分形成了由血影蛋白四聚体交联的相对均匀的二维六边形连接复合物阵列。用非离子洗涤剂C12E8(八乙二醇正十二烷基单醚)处理nb/nb血影,导致带3几乎完全被提取。提取的带3仅以带3二聚体形式存在。荧光光漂白恢复和偏振荧光耗尽测量表明,与对照红细胞相比,完整的nb/nb红细胞中带3的横向(33%对10%)和旋转(90%对76%)移动部分增加。与对照红细胞相比,nb/nb红细胞中带3分子主要部分的旋转相关时间缩短了10倍,表明nb/nb细胞中旋转限制显著松弛。这些数据表明,尽管锚蛋白在加强骨架与膜双层的附着中起主要作用,但基于血影蛋白的稳定二维骨架的形成并不需要锚蛋白。锚蛋白缺乏的红细胞膜中不存在带3四聚体,这表明稳定的带3四聚体的形成需要锚蛋白。