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54Mn2+ as a tracer of the polymerization of actin. Intermediate oligomers condense to give F-actin

机译:54Mn2 +作为肌动蛋白聚合反应的示踪剂。中级低聚物凝结成F-肌动蛋白

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pMg2+, at submicromolar concentrations, is needed for the nucleation of actin [Maruyama (1981) J. Biol. Chem. 256, 1060-1062]. I show here that Mn2+ fulfils the same function. It binds to oligomers present in the ATP-G-actin solutions with a ratio of 2-3 Mn2+ ions per 100 actin monomers and with an association constant of 0.66 × 10(10) M-1 at pH 8.2 at 25 degrees C. The time course of the binding of Mn2+ to polymerizing actin is not affected by the initial concentration of the protein. Analysis of the distribution of the binding shows that, both in the large oligomeric species and in the polymers, 1 Mn2+ ion is bound for every 14-25 actin monomers, whereas in the smaller oligomeric species 1 Mn2+ ion is bound for every 4 actin monomers. The proposal is made that Mn2+ stabilizes actin nuclei and decreases the concentration of the monomers at the steady state. It is also proposed that, at least in some experimental conditions, the direct condensation of oligomers of intermediate length is an effective mechanism of F-actin formation./p
机译:肌动蛋白的成核需要亚微摩尔浓度的Mg2 + [Maruyama(1981)J.化学256,1060-1062]。我在这里表明Mn2 +具有相同的功能。它以每100个肌动蛋白单体2-3 Mn2 +离子的比率和25摄氏度下pH 8.2的缔合常数0.66×10(10)M-1与ATP-G-肌动蛋白溶液中存在的低聚物结合。 Mn2 +与聚合肌动蛋白结合的时间过程不受蛋白质初始浓度的影响。结合分布的分析表明,在大的低聚物种和聚合物中,每14-25个肌动蛋白单体结合1 Mn2 +离子,而在较小的低聚物种中,每4个肌动蛋白单体结合1 Mn2 +离子。 。提出了Mn 2+稳定肌动蛋白核并降低稳态下单体浓度的提议。还提出,至少在某些实验条件下,中等长度的低聚物直接缩合是形成F-肌动蛋白的有效机制。

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