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Interconversion of structural and contractile actin gels by insertion of myosin during assembly

机译:在组装过程中通过插入肌球蛋白来互换结构和收缩肌动蛋白凝胶

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摘要

Extracts of the soluble cytoplasmic proteins of the sea urchin egg form gels of different composition and properties depending on the temperature used to induce actin polymerization. At temperatures that inactivate myosin, a gel composed of actin, fascin, and a 220,000-mol- wt protein is formed. Fascin binds actin into highly organized units with a characteristic banding pattern, and these actin-fascin units are the structural core of the sea urchin microvilli formed after fertilization and of the urchin coelomocyte filopods. Under milder conditions a more complex myosin-containing gel is formed, which contracts to a small fraction of its original volume within an hour after formation. What has been called "structural" gel can be assembled by combining actin, fascin, and the 220,000-mol-wt protein in 50-100 mM KCl; the aim of the experiments reported here was to determine whether myosin could be included during assembly, thereby interconverting structural and contractile gel. This approach is limited by the aggregation of sea urchin myosin at the low salt concentrations utilized in gel assembly. A method has been devised for the sequential combination of these components under controlled KCl and ATP concentrations that allows the formation of a gel containing dispersed myosin at a final concentration of 60-100 mM KCl. These gels are stable at low (approximately 10 micron) ATP concentrations, but contract to a small volume in the presence of higher (approximately 100 micron) ATP. Contraction can be controlled by forming a stable gel at low ATP and then overlaying it with a solution containing sufficient ATP to induce contraction. This system may provide a useful model for the study of the interrelations between cytoplasmic structure and motility.
机译:海胆卵的可溶性细胞质蛋白的提取物根据用于诱导肌动蛋白聚合的温度而形成具有不同组成和性质的凝胶。在使肌球蛋白失活的温度下,形成了由肌动蛋白,肌成束蛋白和220,000-mol-wt蛋白质组成的凝胶。 Fascin将肌动蛋白结合成具有特征性条带模式的高度组织化的单元,这些肌动蛋白-fascin单元是受精后形成的海胆微绒毛和海胆腔粒细胞丝足的结构核心。在较温和的条件下,会形成更复杂的含肌球蛋白的凝胶,该凝胶在形成后一小时内收缩至其原始体积的一小部分。可以通过在50-100 mM KCl中混合肌动蛋白,肌成束蛋白和220,000-mol-wt蛋白来组装所谓的“结构”凝胶。本文报道的实验的目的是确定组装过程中是否可以包含肌球蛋白,从而使结构和收缩凝胶相互转化。这种方法受到凝胶组装中使用的低盐浓度海胆肌球蛋白的聚集的限制。已经设计了一种用于在受控的KCl和ATP浓度下顺序组合这些组分的方法,该方法允许形成最终浓度为60-100 mM KCl的含有分散的肌球蛋白的凝胶。这些凝胶在低(约10微米)ATP浓度下是稳定的,但在更高(约100微米)ATP的存在下收缩到很小的体积。可以通过在低ATP下形成稳定的凝胶,然后将其覆盖在包含足以诱导收缩的ATP的溶液中来控制收缩。该系统可为研究细胞质结构与运动性之间的相互关系提供有用的模型。

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  • 年度 1983
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