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红细胞膜带3细胞质结构域可逆构象平衡的表征

Characterization of the reversible conformational equilibrium of the cytoplasmic domain of erythrocyte membrane band 3.

作者信息

Low P S, Westfall M A, Allen D P, Appell K C

出版信息

J Biol Chem. 1984 Nov 10;259(21):13070-6.

PMID:6490646
Abstract

The cytoplasmic domain of the erythrocyte membrane protein, band 3, contains binding sites for hemoglobin, several glycolytic enzymes, and ankyrin, the linkage to the cytoskeleton. In an earlier study, we found evidence which suggested that band 3 might undergo a native conformational change. We demonstrate here that the cytoplasmic domain of band 3 does exist in a reversible, pH-dependent conformational equilibrium among 3 native states. At physiological salt concentrations this equilibrium is characterized by apparent pKa values of 7.2 and 9.2; however, these apparent pKa values change if the domain's sulfhydryl groups are modified. A major component of the structural change appears to involve the pivoting of two subdomains of the cytoplasmic domain at a central hinge, as evidenced by both hydrodynamic and fluorescence energy transfer measurements. The probable site of this hinge is between residues 176 and 191, a region highly accessible to proteases and also rich in proline. These structural rearrangements also apparently extend to the cluster of tryptophan residues near the N terminus, since the domain's intrinsic fluorescence more than doubles between pH 6.5 and 9.5. No measurable change in band 3 secondary or quaternary structure could be detected during the conformational transitions. A structural model of the cytoplasmic domain of band 3 is presented to show the possible spatial relationships between the regions of conformational change and the sites of peripheral protein binding.

摘要

红细胞膜蛋白带3的胞质结构域含有血红蛋白、几种糖酵解酶和锚蛋白(与细胞骨架的连接蛋白)的结合位点。在早期研究中,我们发现了一些证据,表明带3可能会发生天然构象变化。我们在此证明,带3的胞质结构域确实存在于三种天然状态之间的可逆的、pH依赖性构象平衡中。在生理盐浓度下,这种平衡的特征是表观pKa值为7.2和9.2;然而,如果该结构域的巯基被修饰,这些表观pKa值会发生变化。结构变化的一个主要组成部分似乎涉及胞质结构域的两个亚结构域在一个中央铰链处的枢转,这一点通过流体动力学和荧光能量转移测量都得到了证实。这个铰链的可能位置在残基176和191之间,这是一个蛋白酶极易接近且富含脯氨酸的区域。这些结构重排显然也延伸到了N端附近的色氨酸残基簇,因为该结构域的固有荧光在pH 6.5和9.5之间增加了一倍多。在构象转变过程中,未检测到带3二级或四级结构的可测量变化。本文提出了带3胞质结构域的结构模型,以展示构象变化区域与外周蛋白结合位点之间可能的空间关系。

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