Lee Kwonmoo, Elliott Hunter L, Oak Youbean, Zee Chih-Te, Groisman Alex, Tytell Jessica D, Danuser Gaudenz
Department of Cell Biology, Harvard Medical School, Boston, Massachusetts, 02115, USA.
Department of Physics, University of California San Diego, La Jolla, California, 92093, USA.
Cell Syst. 2015 Jul 29;1(1):37-50. doi: 10.1016/j.cels.2015.07.001.
Highly redundant pathways often contain components whose functions are difficult to decipher from the responses induced by genetic or molecular perturbations. Here, we present a statistical approach that samples and registers events observed in images of intrinsic fluctuations in unperturbed cells to establish the functional hierarchy of events in systems with redundant pathways. We apply this approach to study the recruitment of actin assembly factors involved in the protrusion of the cell membrane. We find that the formin mDia1, along with nascent adhesion components, is recruited to the leading edge of the cell before protrusion onset, initiating linear growth of the lamellipodial network. Recruitment of Arp2/3, VASP, cofilin, and the formin mDia2 then promotes sustained exponential growth of the network. Experiments changing membrane tension suggest that Arp2/3 recruitment is mechano-responsive. These results indicate that cells adjust the overlapping contributions of multiple factors to actin filament assembly during protrusion on a ten-second timescale and in response to mechanical cues.
高度冗余的信号通路通常包含一些组件,其功能难以从基因或分子扰动所引发的反应中解读出来。在此,我们提出一种统计方法,该方法对未受扰动细胞的内在波动图像中观察到的事件进行采样和记录,以确立具有冗余信号通路的系统中事件的功能层次结构。我们应用此方法来研究参与细胞膜突出过程的肌动蛋白组装因子的募集情况。我们发现,formin蛋白mDia1与新生黏附组件一起,在突出开始之前被募集到细胞的前沿,启动片状伪足网络的线性生长。随后,Arp2/3、VASP、丝切蛋白和formin蛋白mDia2的募集促进了网络的持续指数生长。改变膜张力的实验表明,Arp2/3的募集对机械刺激有反应。这些结果表明,细胞在突出过程中以十秒为时间尺度并响应机械信号,调整多种因子对肌动蛋白丝组装的重叠贡献。