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两种血影蛋白亚型的分离:极化的膜结合位点引导极化的膜骨架组装。

Segregation of two spectrin isoforms: polarized membrane-binding sites direct polarized membrane skeleton assembly.

作者信息

Dubreuil R R, Maddux P B, Grushko T A, MacVicar G R

机构信息

Department of Pharmacological and Physiological Sciences, University of Chicago, Illinois 60637, USA.

出版信息

Mol Biol Cell. 1997 Oct;8(10):1933-42. doi: 10.1091/mbc.8.10.1933.

Abstract

Spectrin isoforms are often segregated within specialized plasma membrane subdomains where they are thought to contribute to the development of cell surface polarity. It was previously shown that ankyrin and beta spectrin are recruited to sites of cell-cell contact in Drosophila S2 cells expressing the homophilic adhesion molecule neuroglian. Here, we show that neuroglian has no apparent effect on a second spectrin isoform (alpha beta H), which is constitutively associated with the plasma membrane in S2 cells. Another membrane marker, the Na,K-ATPase, codistributes with ankyrin and alpha beta spectrin at sites of neuroglian-mediated contact. The distributions of these markers in epithelial cells in vivo are consistent with the order of events observed in S2 cells. Neuroglian, ankyrin, alpha beta spectrin, and the Na,K-ATPase colocalize at the lateral domain of salivary gland cells. In contrast, alpha beta H spectrin is sorted to the apical domain of salivary gland and somatic follicle cells. Thus, the two spectrin isoforms respond independently to positional cues at the cell surface: in one case an apically sorted receptor and in the other case a locally activated cell-cell adhesion molecule. The results support a model in which the membrane skeleton behaves as a transducer of positional information within cells.

摘要

血影蛋白异构体通常分隔在特化的质膜亚结构域内,据认为它们在其中有助于细胞表面极性的形成。先前的研究表明,在表达同嗜性粘附分子神经胶质蛋白的果蝇S2细胞中,锚蛋白和β血影蛋白会被招募到细胞间接触位点。在此,我们表明神经胶质蛋白对第二种血影蛋白异构体(αβH)没有明显影响,αβH在S2细胞中与质膜组成性结合。另一种膜标记物钠钾ATP酶,在神经胶质蛋白介导的接触位点与锚蛋白和αβ血影蛋白共分布。这些标记物在体内上皮细胞中的分布与在S2细胞中观察到的事件顺序一致。神经胶质蛋白、锚蛋白、αβ血影蛋白和钠钾ATP酶在唾液腺细胞的侧面结构域共定位。相比之下,αβH血影蛋白被分选到唾液腺和体细胞滤泡细胞的顶端结构域。因此,这两种血影蛋白异构体对细胞表面的位置信号独立做出反应:一种情况是顶端分选的受体,另一种情况是局部激活的细胞间粘附分子。这些结果支持了一个模型,即膜骨架在细胞内充当位置信息的转换器。

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