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A Correlative Analysis of Actin Filament Assembly Structure and Dynamics

机译:肌动蛋白丝组装结构和动力学的相关分析

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摘要

The effect of the type of metal ion (i.e., Ca2+, Mg2+, or none) bound to the high-affinity divalent cation binding site (HAS) of actin on filament assembly, structure, and dynamics was investigated in the absence and presence of the mushroom toxin phalloidin. In agreement with earlier reports, we found the polymerization reaction of G-actin into F-actin filaments to be tightly controlled by the type of divalent cation residing in its HAS. Moreover, novel polymerization data are presented indicating that LD, a dimer unproductive by itself, does incorporate into growing F-actin filaments. This observation suggests that during actin filament formation, in addition to the obligatory nucleation– condensation pathway involving UD, a productive filament dimer, a facultative, LD-based pathway is implicated whose abundance strongly depends on the exact polymerization conditions chosen. The “ragged” and “branched” filaments observed during the early stages of assembly represent a hallmark of LD incorporation and might be key to producing an actin meshwork capable of rapidly assembling and disassembling in highly motile cells. Hence, LD incorporation into growing actin filaments might provide an additional level of regulation of actin cytoskeleton dynamics. Regarding the structure and mechanical properties of the F-actin filament at steady state, no significant correlation with the divalent cation residing in its HAS was found. However, compared to native filaments, phalloidin-stabilized filaments were stiffer and yielded subtle but significant structural changes. Together, our data indicate that whereas the G-actin conformation is tightly controlled by the divalent cation in its HAS, the F-actin conformation appears more robust than this variation. Hence, we conclude that the structure and dynamics of the Mg–F-actin moiety within the thin filament are not significantly modulated by the cyclic Ca2+ release as it occurs in muscle contraction to regulate the actomyosin interaction via troponin.
机译:金属离子类型(即Ca 2 + ,Mg 2 + 或不结合)对高亲和力二价阳离子结合位点(HAS)的影响在没有蘑菇毒素鬼笔环肽的情况下,研究了肌动蛋白对细丝组装,结构和动力学的影响。与先前的报道一致,我们发现G-肌动蛋白聚合成F-肌动蛋白丝的反应受到其HAS中二价阳离子类型的严格控制。此外,提出了新的聚合数据,表明本身不产生二聚体的LD确实掺入了生长的F-肌动蛋白丝中。该观察结果表明,在肌动蛋白丝形成过程中,除了涉及UD的强制成核-缩合途径外,还涉及到生产性丝二聚体,即基于LD的兼性途径,其丰度很大程度上取决于所选择的确切聚合条件。在组装的早期阶段观察到的“参差不齐”和“分支”的细丝代表了LD掺入的标志,并且可能是生产肌动蛋白网状结构的关键,该肌动蛋白网状结构能够在高运动性细胞中快速组装和分解。因此,LD整合到生长的肌动蛋白丝中可能会提供更多水平的肌动蛋白细胞骨架动力学调节。关于稳定状态下的F-肌动蛋白丝的结构和机械性能,未发现与其HAS中存在的二价阳离子显着相关。但是,与天然丝相比,鬼笔环肽稳定的丝更硬,并产生细微但明显的结构变化。总之,我们的数据表明,尽管G-肌动蛋白构象受到其HAS中的二价阳离子的严格控制,但F-肌动蛋白构象似乎比这种变异更为牢固。因此,我们得出结论,细丝中Mg-F-肌动蛋白部分的结构和动力学不受循环Ca 2 + 释放的显着调节,因为它发生在肌肉收缩中以调节肌动球蛋白的相互作用通过肌钙蛋白。

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