RRC ID 73292
著者 Krueger D, Quinkler T, Mortensen SA, Sachse C, De Renzis S.
タイトル Cross-linker-mediated regulation of actin network organization controls tissue morphogenesis.
ジャーナル J Cell Biol
Abstract Contraction of cortical actomyosin networks driven by myosin activation controls cell shape changes and tissue morphogenesis during animal development. In vitro studies suggest that contractility also depends on the geometrical organization of actin filaments. Here we analyze the function of actomyosin network topology in vivo using optogenetic stimulation of myosin-II in Drosophila embryos. We show that early during cellularization, hexagonally arrayed actomyosin fibers are resilient to myosin-II activation. Actomyosin fibers then acquire a ring-like conformation and become contractile and sensitive to myosin-II. This transition is controlled by Bottleneck, a Drosophila unique protein expressed for only a short time during early cellularization, which we show regulates actin bundling. In addition, it requires two opposing actin cross-linkers, Filamin and Fimbrin. Filamin acts synergistically with Bottleneck to facilitate hexagonal patterning, while Fimbrin controls remodeling of the hexagonal network into contractile rings. Thus, actin cross-linking regulates the spatio-temporal organization of actomyosin contraction in vivo, which is critical for tissue morphogenesis.
巻・号 218(8)
ページ 2743-2761
公開日 2019-8-5
DOI 10.1083/jcb.201811127
PII jcb.201811127
PMID 31253650
PMC PMC6683744
MeSH Actins / metabolism* Actomyosin / metabolism Animals Cross-Linking Reagents / metabolism* Drosophila Proteins / chemistry Drosophila Proteins / metabolism Drosophila melanogaster / embryology* Drosophila melanogaster / metabolism* Elasticity Embryo, Nonmammalian / metabolism Gastrulation HeLa Cells Humans Models, Biological Morphogenesis* Mutation / genetics Myosin Type II / metabolism Optogenetics Phenotype Protein Domains
IF 8.811
リソース情報
ショウジョウバエ DGRC#115092 DGRC#115514