首页> 美国卫生研究院文献>Biochemical Journal >The actin-severing activity of cofilin is exerted by the interplay of three distinct sites on cofilin and essential for cell viability.
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The actin-severing activity of cofilin is exerted by the interplay of three distinct sites on cofilin and essential for cell viability.

机译:cofilin的肌动蛋白切断活性是通过cofilin上三个不同位点的相互作用发挥的对细胞活力至关重要。

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摘要

Cofilin/actin-depolymerizing factor is an essential and conserved modulator of actin dynamics. Cofilin binds to actin in either monomeric or filamentous form, severs and depolymerizes actin filaments, and speeds up their treadmilling. A high turnover rate of F-actin in actin-based motility seems driven largely by cofilin-mediated acceleration of directional subunit release, but little by fragmentation of the filaments. On the other hand, the filament-severing function of cofilin seems relevant for the healthy growth of cells. In this study, we have characterized three mutants of porcine cofilin to elucidate the molecular mechanism that underlies the filament-severing activity of cofilin. The first mutant could neither associate with actin filaments nor sever them, whereas it effectively accelerated their treadmilling and directional subunit release. The second mutant bound to actin filaments, but failed to sever them and to interfere with phalloidin binding to the filament. The third mutant could associate with actin filaments and sever them, although with a very reduced efficacy. Of these mutant proteins, only the last one was able to rescue Deltacof1 yeast cells and to induce thick actin bundles in mammalian cells upon overexpression. Therefore, the actin-severing activity of cofilin is an essential element in its vital function and suggested to be exerted by co-operation of at least three distinct sites of cofilin.
机译:肌动蛋白/肌动蛋白解聚因子是肌动蛋白动力学的必要且保守的调节剂。肌动蛋白丝以单体或丝状形式结合肌动蛋白,切断并解聚肌动蛋白丝,并加快其跑步速度。 F-肌动蛋白在基于肌动蛋白的运动中的高周转率似乎主要是由cofilin介导的方向性亚基释放加速,而很少是由细丝断裂引起的。另一方面,cofilin的细丝切断功能似乎与细胞的健康生长有关。在这项研究中,我们表征了猪cofilin的三个突变体,以阐明构成cofilin细丝切断活性的分子机制。第一个突变体既不能与肌动蛋白丝结合,也不能切断它们,而有效地加速了它们的跑步和定向亚基的释放。第二个突变体与肌动蛋白丝结合,但未能切断它们并干扰鬼笔环肽与丝的结合。第三个突变体可以与肌动蛋白丝结合并切断它们,尽管功效大大降低。在这些突变蛋白中,只有最后一个能够在过度表达时拯救Deltacof1酵母细胞并诱导哺乳动物细胞中厚的肌动蛋白束。因此,cofilin的肌动蛋白切断活性是其重要功能的重要组成部分,建议通过至少三个cofilin独特部位的协作发挥作用。

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