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PMID: 23066079 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Forces driving epithelial spreading in zebrafish gastrulation.

Science (New York, N.Y.) ·Vol. 338 ·No. 6104 ·2012-10-12 ·Pages 257-60

Behrndt M, Salbreux G, Campinho P, Hauschild R, Oswald F, Roensch J, Grill SW, Heisenberg CP

Abstract

Contractile actomyosin rings drive various fundamental morphogenetic processes ranging from cytokinesis to wound healing. Actomyosin rings are generally thought to function by circumferential contraction. Here, we show that the spreading of the enveloping cell layer (EVL) over the yolk cell during zebrafish gastrulation is driven by a contractile actomyosin ring. In contrast to previous suggestions, we find that this ring functions not only by circumferential contraction but also by a flow-friction mechanism. This generates a pulling force through resistance against retrograde actomyosin flow. EVL spreading proceeds normally in situations where circumferential contraction is unproductive, indicating that the flow-friction mechanism is sufficient. Thus, actomyosin rings can function in epithelial morphogenesis through a combination of cable-constriction and flow-friction mechanisms.

MeSH Terms
Actomyosin/physiology Animals Constriction Epithelial Cells/cytology,physiology Friction Gastrulation Yolk Sac/cytology Zebrafish/embryology
Chemicals
Actomyosin
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Behrndt Martin
Max Planck Institute of Molecular Cell Biology and Genetics, Pfotenhauerstrasse 108, 01307 Dresden, Germany.
Salbreux Guillaume
Campinho Pedro
Hauschild Robert
Oswald Felix
Roensch Julia
Grill Stephan W
Heisenberg Carl-Philipp
Article Info
Journal
Science (New York, N.Y.)
Abbr.
Science
ISSN
1095-9203
Published
2012-10-12
Pages
257-60
Language
English
Region
United States
NLM ID
0404511
Subset
IM
Grants
Austrian Science Fund FWF · I 930 · Austria
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