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蛋白质4.1与带3之间的相互作用。膜骨架成分的另一个结合位点。

Interactions between protein 4.1 and band 3. An alternative binding site for an element of the membrane skeleton.

作者信息

Pasternack G R, Anderson R A, Leto T L, Marchesi V T

出版信息

J Biol Chem. 1985 Mar 25;260(6):3676-83.

PMID:3972843
Abstract

Protein 4.1 from human erythrocytes formed a complex with band 3 in inside-out erythrocyte membrane vesicles and with soluble peptides derived from the cytoplasmic domain of band 3. Protein 4.1 labeled metabolically with 32P bound saturably to vesicles depleted of endogenous protein 4.1. The soluble cytoplasmic domain of band 3 (43K) competitively displaced approximately 60% of bound 32P-protein 4.1 from reconstituted membrane vesicles. Pretreatment of vesicles with anti-43K similarly inhibited the rebinding of protein 4.1. In solution, 125I-43K formed a complex with protein 4.1 that saturated at 1:1 stoichiometry and migrated as a discrete band when analyzed by nondenaturing polyacrylamide gel electrophoresis. In rate-zonal sedimentation in isotonic salt solutions, protein 4.1 and 43K sedimented as a sharp peak at 4.4 S. In experiments aimed at exploring the role of the protein 4.1-band 3 interaction in the organization of the membrane skeleton, the effect of spectrin was investigated. Spectrin and protein 4.1 formed a complex which co-sedimented in sucrose gradients, but the addition of 43K to preformed spectrin-protein 4.1 complexes resulted in disruption of the complex and co-sedimentation of most of the protein 4.1 with 43K. These results suggest that protein 4.1 can associate with band 3 in the erythrocyte membrane and that this association may modulate the attachment of the membrane skeleton to the membrane.

摘要

来自人红细胞的蛋白质4.1与内翻式红细胞膜囊泡中的带3以及源自带3细胞质结构域的可溶性肽形成复合物。用32P进行代谢标记的蛋白质4.1可饱和结合到耗尽内源性蛋白质4.1的囊泡上。带3的可溶性细胞质结构域(43K)竞争性地从重组膜囊泡中置换了约60%结合的32P - 蛋白质4.1。用抗43K预处理囊泡同样抑制了蛋白质4.1的重新结合。在溶液中,125I - 43K与蛋白质4.1形成复合物,该复合物以1:1的化学计量比饱和,并且在通过非变性聚丙烯酰胺凝胶电泳分析时迁移为一条离散带。在等渗盐溶液中的速率区带沉降实验中,蛋白质4.1和43K以4.4 S的尖锐峰沉降。在旨在探索蛋白质4.1 - 带3相互作用在膜骨架组织中的作用的实验中,研究了血影蛋白的影响。血影蛋白和蛋白质4.1形成复合物,该复合物在蔗糖梯度中共沉降,但是向预先形成的血影蛋白 - 蛋白质4.1复合物中添加43K会导致复合物的破坏,并且大多数蛋白质4.1与43K共沉降。这些结果表明蛋白质4.1可以与红细胞膜中的带3结合,并且这种结合可能调节膜骨架与膜的附着。

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