Profilin promotes lamellipodium protrusion by tuning the antagonistic activities of capping protein and VASP
Authors
- Yubo Tang
- Matthias Schaks
- Xinqi Jiang
- Marius Karger
- Magdalena Mietkowska
- Julian Kaltenhäuser
- Jonas Scholz
- Ruth Benavente-Naranjo
- Sijian Hu
- Sarah Körber
- Zhilun Li
- Christopher Lambert
- Jessica L. Henty-Ridilla
- Theresia E.B. Stradal
- Roger Karlsson
- Peter Bieling
- Jan Faix
- Martin Falcke
- Klemens Rottner
Journal
- Nature Communications
Citation
- Nat Commun 17 (1): 9887
Abstract
Cell migration frequently employs protrusions termed lamellipodia, constituting the prime model system for generation of branched actin filament networks. Here we utilize genome editing to explore the functional connections between the actin monomer-binding protein profilin (Pfn), the filament nucleating Arp2/3 complex, its co-factor heterodimeric capping protein (CP) and Ena/VASP family polymerases in lamellipodial actin assembly. We show that Pfn counters Ena/VASP but promotes Arp2/3 complex activity, while Ena/VASP and CP mutually antagonize each other. While Pfn promotes Arp2/3 complex activity irrespective of Ena/VASP, sensitivity of CP to Pfn removal vanishes in the absence of Ena/VASP. Our findings establish Pfn as master regulator of Arp2/3 complex-dependent actin network formation, differentially regulating VASP and its antagonizer CP. Mathematical modeling of our data suggest Ena/VASP and CP to compete for recruitment to lamellipodial edges. Our work provides critical insights into the molecular logic of branched actin network assembly in protrusion and force generation.