Ena/VASP clustering at microspike tips involves lamellipodin but not I-BAR proteins, and absolutely requires unconventional myosin-X

Author:

Pokrant Thomas1ORCID,Hein Jens Ingo1ORCID,Körber Sarah1ORCID,Disanza Andrea2,Pich Andreas3,Scita Giorgio24ORCID,Rottner Klemens56ORCID,Faix Jan1ORCID

Affiliation:

1. Institute for Biophysical Chemistry, Hannover Medical School, 30625 Hannover, Germany

2. IFOM ETS (Istituto Fondazione di Oncologia Molecolare ETS),  - The AIRC (Italian Association for Cancer Research) Institute of Molecular Oncology, 20139 Milan, Italy

3. Research Core Unit Proteomics, Hannover Medical School, 30625 Hannover, Germany

4. Department of Oncology and Haemato-Oncology, University of Milan, 20139 Milan, Italy

5. Division of Molecular Cell Biology, Zoological Institute, Technische Universität Braunschweig, 38106 Braunschweig, Germany

6. Molecular Cell Biology Group, Helmholtz Centre for Infection Research, 38124 Braunschweig, Germany

Abstract

Sheet-like membrane protrusions at the leading edge, termed lamellipodia, drive 2D-cell migration using active actin polymerization. Microspikes comprise actin-filament bundles embedded within lamellipodia, but the molecular mechanisms driving their formation and their potential functional relevance have remained elusive. Microspike formation requires the specific activity of clustered Ena/VASP proteins at their tips to enable processive actin assembly in the presence of capping protein, but the factors and mechanisms mediating Ena/VASP clustering are poorly understood. Systematic analyses of B16-F1 melanoma mutants lacking potential candidate proteins revealed that neither inverse BAR-domain proteins, nor lamellipodin or Abi is essential for clustering, although they differentially contribute to lamellipodial VASP accumulation. In contrast, unconventional myosin-X (MyoX) identified here as proximal to VASP was obligatory for Ena/VASP clustering and microspike formation. Interestingly, and despite the invariable distribution of other relevant marker proteins, the width of lamellipodia in MyoX-KO mutants was significantly reduced as compared with B16-F1 control, suggesting that microspikes contribute to lamellipodium stability. Consistently, MyoX removal caused marked defects in protrusion and random 2D-cell migration. Strikingly, Ena/VASP-deficiency also uncoupled MyoX cluster dynamics from actin assembly in lamellipodia, establishing their tight functional association in microspike formation.

Funder

Deutsche Forschungsgemeinschaft

Associazione Italiana per la Ricerca sul Cancro

Italian Ministry of University and Scientific Research

Research Training Group

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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