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The WAVE Regulatory Complex Is Required to Balance Protrusion and Adhesion in Migration.


ABSTRACT: Cells migrating over 2D substrates are required to polymerise actin at the leading edge to form lamellipodia protrusions and nascent adhesions to anchor the protrusion to the substrate. The major actin nucleator in lamellipodia formation is the Arp2/3 complex, which is activated by the WAVE regulatory complex (WRC). Using inducible Nckap1 floxed mouse embryonic fibroblasts (MEFs), we confirm that the WRC is required for lamellipodia formation, and importantly, for generating the retrograde flow of actin from the leading cell edge. The loss of NCKAP1 also affects cell spreading and focal adhesion dynamics. In the absence of lamellipodium, cells can become elongated and move with a single thin pseudopod, which appears devoid of N-WASP. This phenotype was more prevalent on collagen than fibronectin, where we observed an increase in migratory speed. Thus, 2D cell migration on collagen is less dependent on branched actin.

SUBMITTER: Whitelaw JA 

PROVIDER: S-EPMC7407199 | biostudies-literature | 2020 Jul

REPOSITORIES: biostudies-literature

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The WAVE Regulatory Complex Is Required to Balance Protrusion and Adhesion in Migration.

Whitelaw Jamie A JA   Swaminathan Karthic K   Kage Frieda F   Machesky Laura M LM  

Cells 20200707 7


Cells migrating over 2D substrates are required to polymerise actin at the leading edge to form lamellipodia protrusions and nascent adhesions to anchor the protrusion to the substrate. The major actin nucleator in lamellipodia formation is the Arp2/3 complex, which is activated by the WAVE regulatory complex (WRC). Using inducible <i>Nckap1</i> floxed mouse embryonic fibroblasts (MEFs), we confirm that the WRC is required for lamellipodia formation, and importantly, for generating the retrograd  ...[more]

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