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WASP and SCAR have distinct roles in activating the Arp2/3 complex during myoblast fusion.

Authors :
Berger S
Schäfer G
Kesper DA
Holz A
Eriksson T
Palmer RH
Beck L
Klämbt C
Renkawitz-Pohl R
Onel SF
Source :
Journal of cell science [J Cell Sci] 2008 Apr 15; Vol. 121 (Pt 8), pp. 1303-13.
Publication Year :
2008

Abstract

Myoblast fusion takes place in two steps in mammals and in Drosophila. First, founder cells (FCs) and fusion-competent myoblasts (FCMs) fuse to form a trinucleated precursor, which then recruits further FCMs. This process depends on the formation of the fusion-restricted myogenic-adhesive structure (FuRMAS), which contains filamentous actin (F-actin) plugs at the sites of cell contact. Fusion relies on the HEM2 (NAP1) homolog Kette, as well as Blow and WASP, a member of the Wiskott-Aldrich-syndrome protein family. Here, we show the identification and characterization of schwächling--a new Arp3-null allele. Ultrastructural analyses demonstrate that Arp3 schwächling mutants can form a fusion pore, but fail to integrate the fusing FCM. Double-mutant experiments revealed that fusion is blocked completely in Arp3 and wasp double mutants, suggesting the involvement of a further F-actin regulator. Indeed, double-mutant analyses with scar/WAVE and with the WASP-interacting partner vrp1 (sltr, wip)/WIP show that the F-actin regulator scar also controls F-actin formation during myoblast fusion. Furthermore, the synergistic phenotype observed in Arp3 wasp and in scar vrp1 double mutants suggests that WASP and SCAR have distinct roles in controlling F-actin formation. From these findings we derived a new model for actin regulation during myoblast fusion.

Details

Language :
English
ISSN :
0021-9533
Volume :
121
Issue :
Pt 8
Database :
MEDLINE
Journal :
Journal of cell science
Publication Type :
Academic Journal
Accession number :
18388318
Full Text :
https://doi.org/10.1242/jcs.022269