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Profilin connects actin assembly with microtubule dynamics

机译:Profilin将肌动蛋白组装体与微管动力学联系起来

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摘要

Profilin controls actin nucleation and assembly processes in eukaryotic cells. Actin nucleation and elongation promoting factors (NEPFs) such as Ena/VASP, formins, and WASP-family proteins recruit profilin: actin for filament formation. Some of these are found to be microtubule associated, making actin polymerization from microtubule-associated platforms possible. Microtubules are implicated in focal adhesion turnover, cell polarity establishment, and migration, illustrating the coupling between actin and microtubule systems. Here we demonstrate that profilin is functionally linked to microtubules with formins and point to formins as major mediators of this association. To reach this conclusion, we combined different fluorescence microscopy techniques, including superresolution microscopy, with siRNA modulation of profilin expression and drug treatments to interfere with actin dynamics. Our studies show that profilin dynamically associates with microtubules and this fraction of profilin contributes to balance actin assembly during homeostatic cell growth and affects microtubule dynamics. Hence profilin functions as a regulator of microtubule (+)-end turnover in addition to being an actin control element.
机译:蛋白酶原控制真核细胞中肌动蛋白的成核和组装过程。肌动蛋白成核和伸长促进因子(NEPF),例如Ena / VASP,formins和WASP家族蛋白募集profilin:肌动蛋白以形成细丝。发现其中一些是与微管相关的,使得与微管相关的平台的肌动蛋白聚合成为可能。微管与粘着斑转换,细胞极性建立和迁移有关,说明肌动蛋白和微管系统之间的耦合。在这里,我们证明了profilin在功能上与带有formin的微管相连,并指向formins作为这种结合的主要介体。为了得出这个结论,我们将不同的荧光显微镜技术(包括超分辨率显微镜)与siRNA调节蛋白原表达和药物治疗相结合,以干扰肌动蛋白的动力学。我们的研究表明,profilin与微管动态关联,profilin的这一部分有助于在稳态细胞生长过程中平衡肌动蛋白装配并影响微管动力学。因此,profilin除了是肌动蛋白控制元件外,还起着微管(+)末端转换的调节剂的作用。

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