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formin Daam1 和 fascin 直接协作促进丝状伪足的形成。

The formin Daam1 and fascin directly collaborate to promote filopodia formation.

机构信息

Department of Biology, Brandeis University, Waltham, MA 02454, USA.

出版信息

Curr Biol. 2013 Jul 22;23(14):1373-9. doi: 10.1016/j.cub.2013.06.013. Epub 2013 Jul 11.

Abstract

Filopodia are slender cellular protrusions that dynamically extend and retract to facilitate directional cell migration, pathogen sensing, and cell-cell adhesion. Each filopodium contains a rigid and organized bundle of parallel actin filaments, which are elongated at filopodial tips by formins and Ena/VASP proteins. However, relatively little is known about how the actin filaments in the filopodial shaft are spatially organized to form a bundle with appropriate dimensions and mechanical properties. Here, we report that the mammalian formin Daam1 (Disheveled-associated activator of morphogenesis 1) is a potent actin-bundling protein and localizes all along the filopodial shaft, which differs from other formins that localize specifically to the tips. Silencing of Daam1 led to severe defects in filopodial number, integrity, and architecture, similar to silencing of the bundling protein fascin. This led us to investigate the potential relationship between Daam1 and fascin. Fascin and Daam1 coimmunoprecipitated from cell extracts, and silencing of fascin led to a striking loss of Daam1 localization to filopodial shafts, but not tips. Furthermore, purified fascin bound directly to Daam1, and multicolor single-molecule TIRF imaging revealed that fascin recruited Daam1 to and stabilized Daam1 on actin bundles in vitro. Our results reveal an unanticipated and direct collaboration between Daam1 and fascin in bundling actin, which is required for proper filopodial formation.

摘要

丝状伪足是一种纤细的细胞突起,能够动态地延伸和缩回,从而促进细胞的定向迁移、病原体感应和细胞间黏附。每个丝状伪足都包含一束刚性且有序的平行肌动蛋白丝,这些肌动蛋白丝在丝状伪足的尖端由formin 和 Ena/VASP 蛋白拉长。然而,对于丝状伪足轴中的肌动蛋白丝如何在空间上组织形成具有适当尺寸和机械性能的束,我们知之甚少。在这里,我们报告哺乳动物formin Daam1(Disheveled 相关形态发生激活因子 1)是一种有效的肌动蛋白成束蛋白,它定位于丝状伪足的整个轴上,这与定位于尖端的其他 formin 不同。Daam1 的沉默导致丝状伪足数量、完整性和结构严重缺陷,类似于束状蛋白 fascin 的沉默。这促使我们研究 Daam1 和 fascin 之间的潜在关系。Fascin 和 Daam1 从细胞提取物中共同免疫沉淀,而 fascin 的沉默导致 Daam1 明显失去了向丝状伪足轴的定位,但尖端仍有定位。此外,纯化的 fascin 直接与 Daam1 结合,多色单分子 TIRF 成像显示 fascin 在体外将 Daam1 募集到肌动蛋白束上并稳定 Daam1。我们的结果揭示了 Daam1 和 fascin 在肌动蛋白成束中的意外和直接协作,这对于适当的丝状伪足形成是必需的。

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