Actin-binding membrane proteins identified by F-actin blot overlays.

E J Luna, K N Pestonjamasp, R E Cheney, C P Strassel, T H Lu, C P Chia, A L Hitt, M Fechheimer, H Furthmayr, M S Mooseker
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Abstract

Actin and associated proteins at the cytoskeleton-plasma membrane interface stabilize the membrane bilayer, control cell shape, and delimit specialized membrane domains. To identify membrane proteins that bind directly to F-actin, we have developed a blot overlay assay with 125I-labeled F-actin. In the soil amoebae, Dictyostelium discoideum, the major proteins reactive in this assay are p30a, a 34-kD peripheral membrane protein that is concentrated in filopodia and at sites of cell-cell adhesion, and ponticulin, a 17-kD transmembrane glycoprotein required for efficient chemotaxis and for control of pseudopod dynamics. Proteins with apparent molecular masses of approximately 34- and approximately 17-kD also are observed on F-actin blot overlays of many mammalian cell lines. However, in mammalian cells, the most prominent F-actin binding proteins in this assay exhibit apparent molecular masses of 78-, 80-, 81-, approximately 120-, and 205-kD. Bovine neutrophils contain the 78-, 81-, and 205-kD proteins, all of which co-isolate with a plasma membrane-enriched fraction. We have previously identified the 78-, 80-, and 81-kD proteins as moesin, radixin, and ezrin, respectively. These proteins, which are members of the protein 4.1 superfamily, colocalize with actin in cell surface extensions and have been implicated in the protrusion of microvilli, filopodia, and membrane ruffles. The 205-kD protein (p205) appears to be absent from current databases, and its characteristics are still under investigation. We here report that the 120-kD protein is drebrin, a submembranous actin-binding protein originally identified as a developmentally regulated brain protein. Thus, it appears that F-actin blot overlays provide an efficient assay for simultaneous monitoring of a subset of F-actin binding proteins, including p30a, ponticulin, moesin, radixin, ezrin, p205, and drebrin.

通过F-actin印迹覆盖鉴定肌动蛋白结合膜蛋白。
肌动蛋白和细胞骨架-质膜界面的相关蛋白稳定膜双分子层,控制细胞形状,并划定专门的膜结构域。为了鉴定直接与f -肌动蛋白结合的膜蛋白,我们开发了一种125i标记的f -肌动蛋白的印迹覆盖试验。在土壤变形虫Dictyostelium disideum中,在该实验中反应的主要蛋白质是p30a,一种34-kD的外周膜蛋白,集中在丝状足和细胞-细胞粘附部位,以及ponticulin,一种17-kD的跨膜糖蛋白,用于有效的趋化和控制伪足动力学。在许多哺乳动物细胞系的F-actin印迹覆盖层上也观察到表观分子质量约为34- kd和约为17-kD的蛋白质。然而,在哺乳动物细胞中,本实验中最突出的f -肌动蛋白结合蛋白表现出明显的分子质量为78-、80-、81-、大约120-和205-kD。牛中性粒细胞含有78-、81-和205-kD蛋白,所有这些蛋白都与质膜富集部分共分离。我们之前已经鉴定出78-、80-和81-kD蛋白分别为moesin、radixin和ezrin。这些蛋白是蛋白4.1超家族的成员,在细胞表面延伸中与肌动蛋白共定位,并与微绒毛、丝状足和膜褶的突出有关。目前的数据库中似乎没有205-kD蛋白(p205),其特性仍在研究中。我们在这里报道了120-kD的蛋白是drebrin,一种亚膜肌动蛋白结合蛋白,最初被认为是一种发育调节的脑蛋白。因此,f -肌动蛋白印迹覆盖为同时监测f -肌动蛋白结合蛋白子集提供了一种有效的检测方法,包括p30a、ponticulin、moesin、radixin、ezrin、p205和drebrin。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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