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红细胞膜中带3蛋白的旋转扩散。2. 胞质酶的结合

Rotational diffusion of band 3 in erythrocyte membranes. 2. Binding of cytoplasmic enzymes.

作者信息

Matayoshi E D, Sawyer W H, Jovin T M

机构信息

Department of Molecular Biology, Max Planck Institute for Biophysical Chemistry, Göttingen, FRG.

出版信息

Biochemistry. 1991 Apr 9;30(14):3538-43. doi: 10.1021/bi00228a026.

Abstract

Time-resolved phosphorescence anisotropy has been used to study the rotational diffusion of eosin-labeled human erythrocyte band 3 in the presence of an enzyme bound at its cytoplasmic pole. With increasing amounts of G3PD (glyceraldehyde-3-phosphate dehydrogenase) added to ghosts, the infinite time anisotropy (r infinity) increases, and at saturating concentrations, very little decay of the anisotropy r(t) occurs at all. These phenomena are reversed by elution of the enzyme with 150 mM NaCl. Prior proteolytic removal of the N-terminal 41-kDa cytoplasmic fragment of band 3 also disenables the G3PD effect. When ghosts are stripped of their residually bound G3PD, a small reduction in the fraction of immobile band 3 is observed. Finally, titration of band 3 sites with aldolase shows effects on the r(t) qualitatively similar to those observed with G3PD. On the basis of our interpretation of the heterogenous anisotropy decay of eosin-labeled band 3 [Matayoshi, E. D., & Jovin, T. M. (1991) Biochemistry (preceding paper in this issue)], we conclude that the binding of G3PD and aldolase results in the immobilization of band 3 oligomers.

摘要

时间分辨磷光各向异性已被用于研究在其细胞质极结合有酶的情况下,用曙红标记的人红细胞带3的旋转扩散。随着添加到血影中的甘油醛-3-磷酸脱氢酶(G3PD)量的增加,无限时间各向异性(r无穷大)增加,并且在饱和浓度下,各向异性r(t)几乎完全不发生衰减。用150 mM NaCl洗脱酶可使这些现象逆转。预先用蛋白酶去除带3的N端41 kDa细胞质片段也会消除G3PD效应。当血影中残留结合的G3PD被去除时,观察到不可移动的带3部分略有减少。最后,用醛缩酶滴定带3位点显示出对r(t)的影响在质量上与用G3PD观察到的相似。基于我们对曙红标记的带3的异质各向异性衰减的解释[Matayoshi, E. D., & Jovin, T. M. (1991) Biochemistry(本期之前的论文)],我们得出结论,G3PD和醛缩酶的结合导致带3寡聚体的固定化。

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