Institute for Biophysical Chemistry, Hannover Medical School, Carl-Neuberg-Strasse 1, 30625 Hannover, Germany.
Cells. 2023 Mar 14;12(6):890. doi: 10.3390/cells12060890.
Filopodia are dynamic, finger-like actin-filament bundles that overcome membrane tension by forces generated through actin polymerization at their tips to allow extension of these structures a few microns beyond the cell periphery. Actin assembly of these protrusions is regulated by accessory proteins including heterodimeric capping protein (CP) or Ena/VASP actin polymerases to either terminate or promote filament growth. Accordingly, the depletion of CP in B16-F1 melanoma cells was previously shown to cause an explosive formation of filopodia. In Ena/VASP-deficient cells, CP depletion appeared to result in ruffling instead of inducing filopodia, implying that Ena/VASP proteins are absolutely essential for filopodia formation. However, this hypothesis was not yet experimentally confirmed.
Here, we used B16-F1 cells and CRISPR/Cas9 technology to eliminate CP either alone or in combination with Ena/VASP or other factors residing at filopodia tips, followed by quantifications of filopodia length and number.
Unexpectedly, we find massive formations of filopodia even in the absence of CP and Ena/VASP proteins. Notably, combined inactivation of Ena/VASP, unconventional myosin-X and the formin FMNL3 was required to markedly impair filopodia formation in CP-deficient cells.
Taken together, our results reveal that, besides Ena/VASP proteins, numerous other factors contribute to filopodia formation.
丝状伪足是一种动态的、指状的肌动蛋白丝束,通过其尖端的肌动蛋白聚合产生的力克服膜张力,从而使这些结构在细胞边缘外延伸几微米。这些突起的肌动蛋白组装受到辅助蛋白的调节,包括异二聚体盖帽蛋白(CP)或 Ena/VASP 肌动蛋白聚合酶,以终止或促进丝的生长。因此,先前的研究表明,B16-F1 黑色素瘤细胞中 CP 的耗竭会导致丝状伪足的爆炸性形成。在 Ena/VASP 缺陷细胞中,CP 的耗竭似乎导致皱襞而不是诱导丝状伪足,这意味着 Ena/VASP 蛋白对于丝状伪足的形成是绝对必要的。然而,这一假设尚未得到实验证实。
在这里,我们使用 B16-F1 细胞和 CRISPR/Cas9 技术单独或组合耗竭 CP 以及 Ena/VASP 或其他位于丝状伪足尖端的因子,然后对丝状伪足的长度和数量进行定量。
出乎意料的是,即使在缺乏 CP 和 Ena/VASP 蛋白的情况下,我们也发现了大量丝状伪足的形成。值得注意的是,Ena/VASP、非典型肌球蛋白-X 和形成蛋白 FMNL3 的联合失活对于显著损害 CP 缺陷细胞中的丝状伪足形成是必需的。
综上所述,我们的结果表明,除了 Ena/VASP 蛋白外,还有许多其他因素有助于丝状伪足的形成。