首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Dictyostelium discoideum plasma membranes contain an actin-nucleating activity that requires ponticulin an integral membrane glycoprotein
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Dictyostelium discoideum plasma membranes contain an actin-nucleating activity that requires ponticulin an integral membrane glycoprotein

机译:盘基网柄菌质膜具有肌动蛋白成核活性需要肌动蛋白一种不可或缺的膜糖蛋白

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摘要

In previous equilibrium binding studies, Dictyostelium discoideum plasma membranes have been shown to bind actin and to recruit actin into filaments at the membrane surface. However, little is known about the kinetic pathway(s) through which actin assembles at these, or other, membranes. We have used actin fluorescently labeled with N-(1- pyrenyl)iodoacetamide to examine the kinetics of actin assembly in the presence of D. discoideum plasma membranes. We find that these membranes increase the rate of actin polymerization. The rate of membrane-mediated actin polymerization is linearly dependent on membrane protein concentrations up to 20 micrograms/ml. Nucleation (the association of activated actin monomers into oligomers) appears to be the primary step of polymerization that is accelerated. A sole effect on the initial salt-induced actin conformational change (activation) is ruled out because membranes accelerate the polymerization of pre- activated actin as well as actin activated in the presence of membranes. Elongation of preexisting filaments also is not the major step of polymerization facilitated by membranes since membranes stripped of all peripheral components, including actin, increase the rate of actin assembly to about the same extent as do membranes containing small amounts of endogenous actin. Acceleration of the nucleation step by membranes also is supported by an analysis of the dependence of polymerization lag time on actin concentration. The barbed ends of membrane-induced actin nuclei are not obstructed by the membranes because the barbed end blocking agent, cytochalasin D, reduces the rate of membrane-mediated actin nucleation. Similarly, the pointed ends of the nuclei are not blocked by membranes since the depolymerization rate of gelsolin-capped actin is unchanged in the presence of membranes. These results are consistent with previous observations of lateral interactions between membranes and actin filaments. These results also are consistent with two predictions from a model based on equilibrium binding studies; i.e., that plasma membranes should nucleate actin assembly and that membrane-bound actin nuclei should have both ends free (Schwartz, M. A., and E. J. Luna. 1988. J. Cell Biol. 107:201-209). Integral membrane proteins mediate the actin nucleation activity because activity is eliminated by heat denaturation, treatment with reducing agents, or proteolysis of membranes. Activity also is abolished by solubilization with octylglucoside but is reconstituted upon removal or dilution of the detergent. Ponticulin, the major actin-binding protein in plasma membranes, appears to be necessary for nucleation activity since activity is not reconstituted from detergent extracts depleted of ponticulin.
机译:在以前的平衡结合研究中,Disctyostelium Discoideum质膜已显示出结合肌动蛋白并将肌动蛋白募集到膜表面的细丝中。但是,关于肌动蛋白在这些或其他膜上组装的动力学途径知之甚少。我们已经使用荧光标记有N-(1-吡啶基)碘乙酰胺的肌动蛋白来检查在迪斯科舞膜质膜存在下肌动蛋白组装的动力学。我们发现这些膜增加了肌动蛋白的聚合速率。膜介导的肌动蛋白聚合速率线性地取决于膜蛋白浓度,最高可达20微克/毫升。成核(活化的肌动蛋白单体缔合为低聚物)似乎是加速聚合的主要步骤。排除了对最初的盐诱导的肌动蛋白构象变化(激活)的唯一影响,因为膜加速了预激活的肌动蛋白的聚合以及存在膜时被激活的肌动蛋白的聚合。已有的长丝的伸长也不是膜促成聚合的主要步骤,因为剥离了包括肌动蛋白在内的所有外围组分的膜,肌动蛋白的组装速度将增加到与含有少量内源性肌动蛋白的膜相同的程度。通过对聚合反应滞后时间对肌动蛋白浓度的依赖性分析,也支持了通过膜加速成核步骤。膜不会阻塞膜诱导的肌动蛋白核的倒刺末端,因为带刺的末端阻断剂细胞松弛素D降低了膜介导的肌动蛋白成核的速率。类似地,由于在存在膜的情况下凝溶胶蛋白封端的肌动蛋白的解聚速率不变,因此膜的核末端不会被膜阻塞。这些结果与先前观察到的膜与肌动蛋白丝之间的横向相互作用的结果是一致的。这些结果也与基于平衡结合研究的模型的两个预测一致。即,质膜应使肌动蛋白组装成核,而膜结合的肌动蛋白核应具有两端自由(Schwartz,M.A。和E.J.Luna.1988.J.Cell Biol.107:201-209)。整体膜蛋白介导肌动蛋白成核活性,因为通过热变性,还原剂处理或膜蛋白水解可消除活性。通过用辛基葡糖苷溶解也消除了活性,但是在去除或稀释去污剂后恢复了活性。桥蛋白是质膜中主要的肌动蛋白结合蛋白,对于成核活性而言似乎是必需的,因为其活性不会从耗竭了桥蛋白的去污剂提取物中重新构成。

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