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首页> 外文期刊>Journal of cell biology >Actin from Thyone sperm assembles on only one end of an actin filament: a behavior regulated by profilin.
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Actin from Thyone sperm assembles on only one end of an actin filament: a behavior regulated by profilin.

机译:来自Thyone精子的肌动蛋白仅在肌动蛋白丝的一端组装:这种行为受蛋白素调节。

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摘要

Thyone sperm were demembranated with Triton X-100 and, after washing, extracted with 30 mM Tris at pH 8.0 and 1 mM MgCl2. After the insoluble contaminants were removed by centrifugation, the sperm extract was warmed to 22 degrees C. Actin filaments rapidly assembled and aggregated into bundles when KCl was added to the extract. When we added preformed actin filaments, i.e., the acrosomal filament bundles of Limulus sperm, to the extract, the actin monomers rapidly assembled on these filaments. What was unexpected was that assembly took place on only one end of the bundle--the end corresponding to the preferred end for monomer addition. We showed that the absence of growth on the nonpreferred end was not due to the presence of a capper because exogenously added actin readily assembled on both ends. We also analyzed the sperm extract by SDS gel electrophoresis. Two major proteins were present in a 1:1 molar ratio: actin and a 12,500-dalton protein whose apparent isoelectric point was 8.4. The 12,500-dalton protein was purified by DEAE chromatography. We concluded that it is profilin because of its size, isoelectric point, molar ratio to actin, inability to bind to DEAE, and its effect on actin assembly. When profilin was added to actin in the presence of Limulus bundles, addition of monomers on the nonpreferred end of the bundle was inhibited, even though actin by itself assembled on both ends. Using the Limulus bundles as nuclei, we determined the critical concentration for assembly off each end of the filament and estimated the Kd for the profilin-actin complex (approximately 10 microM). We present a model to explain how profilin may regulate the extension of the Thyone acrosomal process in vivo: The profilin-actin complex can add to only the preferred end of the filament bundle. Once the actin monomer is bound to the filament, the profilin is released, and is available to bind to additional actin monomers. This mechanism accounts for the rapid rate of filament elongation in the acrosomal process in vivo.
机译:用Triton X-100去除甲状腺精子的膜,洗涤后,用pH 8.0的30 mM Tris和1 mM的MgCl2萃取。通过离心去除不溶性污染物后,将精子提取物温热至22摄氏度。肌动蛋白丝迅速组装并在向提取物中添加KCl时聚集成束。当我们向提取物中添加预制的肌动蛋白丝,即Li精子的顶体丝束时,肌动蛋白单体迅速组装在这些丝上。出乎意料的是,组装仅在束的一端进行,该端对应于单体添加的优选端。我们表明,在非优选的末端没有生长不是由于存在封盖剂,因为外源添加的肌动蛋白很容易在两端组装。我们还通过SDS凝胶电泳分析了精子提取物。两种主要蛋白质以1:1的摩尔比存在:肌动蛋白和表观等电点为8.4的12,500道尔顿蛋白质。通过DEAE色谱法纯化12,500道尔顿的蛋白质。我们得出的结论是它是profilin,因为它的大小,等电点,与肌动蛋白的摩尔比,无法与DEAE结合以及对肌动蛋白组装的影响。当在Li束的存在下向肌动蛋白中添加肌醇蛋白时,即使肌动蛋白本身在两端组装,也抑制了在束的非优选末端上单体的添加。使用the束作为核,我们确定了从细丝的每个末端组装的临界浓度,并估计了蛋白纤溶酶-肌动蛋白复合物的Kd(约10 microM)。我们提出了一个模型来解释profilin如何在体内调节Thyone顶体过程的延伸:profilin-actin复合物只能添加到细丝束的优选末端。一旦肌动蛋白单体结合到细丝上,就释放出肌动蛋白原,并可以与其他肌动蛋白单体结合。该机制解释了体内顶体过程中细丝伸长的快速速率。

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