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红细胞膜带3胞质结构域上蛋白质4.1结合位点的定位

Localization of the protein 4.1-binding site on the cytoplasmic domain of erythrocyte membrane band 3.

作者信息

Lombardo C R, Willardson B M, Low P S

机构信息

Department of Chemistry, Purdue University, West Lafayette, Indiana 47907.

出版信息

J Biol Chem. 1992 May 15;267(14):9540-6.

PMID:1374405
Abstract

Of the several proteins that bind along the cytoplasmic domain of erythrocyte membrane band 3, only the sites of interaction of proteins 4.1 and 4.2 remain to be at least partially localized. Using five independent techniques, we have undertaken to map and characterize the binding site of band 4.1 on band 3. First, transfer of a radioactive cross-linker (125I-2-(p-azido-salicylamido)ethyl-1-3-dithiopropionate) from purified band 4.1 to its binding sites on stripped inside-out erythrocyte membrane vesicles (stripped IOVs) revealed major labeling of band 3, glycophorin C, and glycophorin A. Proteolytic mapping of the stripped IOVs then demonstrated that the label on band 3 was confined largely to a fragment comprising residues 1-201. Second, competitive binding experiments with Fab fragments of monoclonal and peptide-specific polyclonal antibodies to numerous epitopes along the cytoplasmic domain of band 3 displayed stoichiometric competition only with Fabs to epitopes between residues 1 and 91 of band 3. Weak competition was also observed with Fabs to a sequence of the cytoplasmic domain directly adjacent to the membrane-spanning domain, but only at 50-100-fold excess of Fab. Third, band 4.1 protected band 3 from chymotryptic hydrolysis at tyrosine 46 and to a much lesser extent at a site within the junctional peptide connecting the membrane-spanning and cytoplasmic domains of band 3. Fourth, ankyrin, which has been previously shown to interact with band 3 both near a putative central hinge and at the N terminus competed with band 4.1 for band 3 in stripped IOVs. Since band 4.1 does not associate with band 3 near the flexible central hinge, the competition with ankyrin can be assumed to derive from a mutual association with the N terminus. Finally, a synthetic peptide corresponding to residues 1-15 of band 3 was found to mildly inhibit band 4.1 binding to stripped IOVs. Taken together, these data suggest that band 4.1 binds band 3 predominantly near the N terminus, with a possible secondary site near the junction of the cytoplasmic domain and the membrane.

摘要

在几种与红细胞膜带3胞质结构域结合的蛋白质中,只有蛋白质4.1和4.2的相互作用位点仍有待至少部分定位。我们使用了五种独立技术,试图绘制并表征带4.1在带3上的结合位点。首先,将放射性交联剂(125I-2-(对叠氮水杨酰胺基)乙基-1,3-二硫代丙酸酯)从纯化的带4.1转移到剥离的内向外红细胞膜囊泡(剥离的IOV)上其结合位点,结果显示带3、血型糖蛋白C和血型糖蛋白A有主要标记。对剥离的IOV进行蛋白酶解图谱分析,结果表明带3上的标记主要局限于一个包含1至201位残基的片段。其次,用针对带3胞质结构域上众多表位的单克隆抗体和肽特异性多克隆抗体的Fab片段进行竞争性结合实验,结果显示仅与针对带3第1至91位残基之间表位的Fab片段存在化学计量竞争。还观察到与针对紧邻跨膜结构域的胞质结构域序列的Fab片段存在弱竞争,但仅在Fab片段过量50至100倍时出现。第三,带4.1保护带3免受胰凝乳蛋白酶在酪氨酸46处的水解,在连接带3跨膜结构域和胞质结构域的连接肽内的一个位点处的保护作用则小得多。第四,先前已证明锚蛋白在一个假定的中央铰链附近和N末端都与带3相互作用,在剥离的IOV中它与带4.1竞争结合带3。由于带4.1不在柔性中央铰链附近与带3结合,因此与锚蛋白的竞争可假定源于与N末端的相互结合。最后,发现一个与带3第1至15位残基对应的合成肽可轻度抑制带4.1与剥离的IOV的结合。综合这些数据表明,带4.1主要在N末端附近结合带3,在胞质结构域与膜的交界处附近可能存在一个次要位点。

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