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首页> 外文期刊>Journal of cell biology >A membrane cytoskeleton from Dictyostelium discoideum. II. Integral proteins mediate the binding of plasma membranes to F-actin affinity beads.
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A membrane cytoskeleton from Dictyostelium discoideum. II. Integral proteins mediate the binding of plasma membranes to F-actin affinity beads.

机译:盘基网柄菌的膜细胞骨架。二。整体蛋白介导质膜与F-肌动蛋白亲和珠的结合。

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In novel, low-speed sedimentation assays, highly purified, sonicated Dictyostelium discoideum plasma membrane fragments bind to F-actin beads (fluorescein-labeled F-actin on antifluorescein IgG-Sephacryl S-1000 beads). Binding was found to be (a) specific, since beads containing bound fluorescein-labeled ovalbumin or beads without bound fluorescein-labeled protein do not bind membranes, (b) saturable at approximately 0.6 microgram of membrane protein per microgram of bead-bound F-actin, (c) rapid with a t1/2 of 4-20 min, and (d) apparently of reasonable affinity since the off rate is too slow to be measured by present techniques. Using low-speed sedimentation assays, we found that sonicated plasma membrane fragments, after extraction with chaotropes, still bind F-actin beads. Heat-denatured membranes, proteolyzed membranes, and D. discoideum lipid vesicles did not bind F-actin beads. These results indicate that integral membrane proteins are responsible for the binding between sonicated membrane fragments and F-actin on beads. This finding agrees with the previous observation that integral proteins mediate interactions between D. discoideum plasma membranes and F-actin in solution (Luna, E.J., V. M. Fowler, J. Swanson, D. Branton, and D. L. Taylor, 1981, J. Cell Biol., 88:396-409). We conclude that low-speed sedimentation assays using F-actin beads are a reliable method for monitoring the associations between F-actin and membranes. Since these assays are relatively quantitative and require only micrograms of membranes and F-actin, they are a significant improvement over other existing techniques for exploring the biochemical details of F-actin-membrane interactions. Using F-actin beads as an affinity column for actin-binding proteins, we show that at least 12 integral polypeptides in D. discoideum plasma membranes bind to F-actin directly or indirectly. At least four of these polypeptides appear to span the membrane and are thus candidates for direct transmembrane links between the cytoskeleton and the cell surface.
机译:在新颖的低速沉降测定中,高度纯化的超声处理的盘基网柄菌质膜片段会结合F-肌动蛋白珠(抗荧光素IgG-Sephacryl S-1000珠上的荧光素标记的F-肌动蛋白)。发现结合是(a)特异的,因为含有结合的荧光素标记的卵清蛋白的珠子或没有结合的荧光素标记的蛋白的珠子不结合膜,(b)每微克结合珠子的F-以约0.6微克膜蛋白饱和。肌动蛋白,(c)的t1 / 2为4-20分钟,迅速,和(d)显然具有合理的亲和力,因为解离速率太慢,无法用现有技术测量。使用低速沉降测定法,我们发现超声处理的质膜碎片经离液剂萃取后仍能结合F-肌动蛋白珠。热变性膜,蛋白水解膜和D. discoideum脂质囊泡不结合F-肌动蛋白珠。这些结果表明,完整的膜蛋白负责超声处理的膜片段与珠子​​上F-肌动蛋白之间的结合。这一发现与先前的观察结果一致,即整合蛋白介导了D. discoideum质膜与溶液中的F-肌动蛋白之间的相互作用(Luna,EJ,VM Fowler,J。Swanson,D。Branton和DL Taylor,1981,J。Cell Biol 。,88:396-409)。我们得出结论,使用F-肌动蛋白珠的低速沉降测定法是监测F-肌动蛋白与膜之间关联的可靠方法。由于这些测定是相对定量的,并且仅需要微克的膜和F-肌动蛋白,因此,它们是对其他现有技术进行F-肌动蛋白-膜相互作用生化细节探索的重大改进。使用F-肌动蛋白珠作为肌动蛋白结合蛋白的亲和力列,我们表明D.discoideum质膜中至少12个完整多肽直接或间接结合F-肌动蛋白。这些多肽中至少有四个似乎跨膜,因此是细胞骨架与细胞表面之间直接跨膜连接的候选对象。

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