Department of Systemic Cell Biology, Max Planck Institute of Molecular Physiology, Otto-Hahn-Strasse 11, 44227 Dortmund, Germany.
Division of Molecular Cell Biology, Zoological Institute, Technische Universität Braunschweig, Spielmannstrasse 7, 38106 Braunschweig, Germany; Department of Cell Biology, Helmholtz Centre for Infection Research, Inhoffenstrasse 7, 38124 Braunschweig, Germany.
Curr Opin Cell Biol. 2023 Feb;80:102156. doi: 10.1016/j.ceb.2023.102156. Epub 2023 Mar 1.
Branched actin networks have emerged as major force-generating structures driving the protrusions in various distinct cell types and processes, ranging from lamellipodia operating in mesenchymal and epithelial cell migration or tails pushing intracellular pathogens and vesicles to developing spine heads on neurons. Many key molecular features are conserved among all those Arp2/3 complex-containing, branched actin networks. Here, we will review recent progress in our molecular understanding of the core biochemical machinery driving branched actin nucleation, from the generation of filament primers to Arp2/3 activator recruitment, regulation and turnover. Due to the wealth of information on distinct, Arp2/3 network-containing structures, we are largely focusing-in an exemplary fashion-on canonical lamellipodia of mesenchymal cells, which are regulated by Rac GTPases, their downstream effector WAVE Regulatory Complex and its target Arp2/3 complex. Novel insight additionally confirms that WAVE and Arp2/3 complexes regulate or are themselves tuned by additional prominent actin regulatory factors, including Ena/VASP family members and heterodimeric capping protein. Finally, we are considering recent insights into effects exerted by mechanical force, both at the branched network and individual actin regulator level.
分支肌动蛋白网络已成为主要的力产生结构,驱动各种不同细胞类型和过程中的突起,范围从在间质和上皮细胞迁移中起作用的片状伪足或推动细胞内病原体和囊泡的尾部,到神经元上正在发育的棘突头部。所有含有 Arp2/3 复合物的分支肌动蛋白网络都具有许多关键的分子特征。在这里,我们将回顾最近在我们对驱动分支肌动蛋白成核的核心生化机制的分子理解方面的进展,从细丝引发子的产生到 Arp2/3 激活剂的募集、调节和周转。由于关于不同的、含有 Arp2/3 网络的结构的信息丰富,我们主要以典型的间质细胞的经典片状伪足为重点,这些伪足受 Rac GTPases、其下游效应物 WAVE 调节复合物及其靶标 Arp2/3 复合物调节。新的见解还证实,WAVE 和 Arp2/3 复合物通过其他突出的肌动蛋白调节因子进行调节或自身被调节,包括 Ena/VASP 家族成员和异二聚体盖帽蛋白。最后,我们正在考虑最近对分支网络和单个肌动蛋白调节剂水平的机械力施加的影响的见解。