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Electrostatic balance between global repulsion and local attraction in reentrant polymerization of actin

机译:肌动蛋白的旋回旋转聚合中全球排斥与局部吸引的静电平衡

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Abstract Actin polymerization depends on the salt concentration, exhibiting a reentrant behavior: the polymerization is promoted by increasing KCl concentration up to 100 mM, and then depressed by further increase above 100 mM. We here investigated the physical mechanism of this reentrant behavior by calculating the polymerization energy, defined by the electrostatic energy change upon binding of an actin subunit to a filament, using an implicit solvent model based on the Poisson‐Boltzmann (PB) equation. We found that the polymerization energy as a function of the salt concentration shows a non‐monotonic reentrant‐like behavior, with the minimum at about 100 mM (1:1 salt). By separately examining the salt concentration effect on the global electrostatic repulsion between the like‐charged subunits and that on the local electrostatic attraction between the inter‐subunit ionic‐bond‐forming residues in the filament, we clarified that the reentrant behavior is caused by the change in the balance between the two opposing electrostatic interactions. Our study showed that the non‐specific nature of counterions, as described in the mean‐field theory, plays an important role in the actin polymerization. We also discussed the endothermic nature of the actin polymerization and mentioned the effect of ATP hydrolysis on the G‐F transformation, indicating that the electrostatic interaction is widely and intricately involved in the actin dynamics.
机译:摘要肌动蛋白聚合取决于盐浓度,表现出倒退行为:通过将kCl浓度增加至100mm,然后进一步增加100mm来促进聚合。我们在这里研究了通过基于Poisson-Boltzmann(Pb)方程的隐式溶剂模型在致动蛋白亚基对灯丝结合时由静电能量变化限定的聚合能量来研究这种重圈行为的物理机制。我们发现,作为盐浓度的函数的聚合能量显示出非单调的克雷反应状行为,最小在约100mm(1:1盐)。通过单独检查盐浓度对类似电荷亚基之间的全球静电排斥的影响,并且在灯丝中亚基间离子键合成残留物之间的局部静电吸引力上,我们澄清了重圈行为是由此引起的两个反对静电相互作用之间的平衡变化。我们的研究表明,抗衡离子的非特异性性质,如平均场理论所述,在肌动蛋白聚合中起重要作用。我们还讨论了肌动蛋白聚合的吸热性质,并提到了ATP水解对G-F变换的影响,表明静电相互作用广泛地涉及肌动蛋白动态。

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