首页> 外文期刊>Journal of Cell Science >F-BAR domain protein Syndapin regulates actomyosin dynamics during apical cap remodeling in syncytial Drosophila embryos
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F-BAR domain protein Syndapin regulates actomyosin dynamics during apical cap remodeling in syncytial Drosophila embryos

机译:F-Bar结构域蛋白质Syndapin调节在合胞果蝇胚胎的顶端帽重塑过程中的Actomyosin动力学

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摘要

Branched actin networks driven by Arp2/3 interact with actomyosin filaments in processes such as cell migration. Similar interactions occur in the syncytial Drosophila blastoderm embryo where expansion of apical caps by Arp2/3-driven actin polymerization occurs in interphase, and cap buckling at contact edges by Myosin II to form furrows takes place in metaphase. Here, we study the role of Syndapin (Synd), an F-BAR domain-containing protein, in apical cap remodeling prior to furrow extension. We found that depletion of synd resulted in larger apical caps. Super-resolution and TIRF microscopy showed that control embryos had long apical actin protrusions in caps during interphase and short protrusions during metaphase, whereas synd depletion led to formation of sustained long protrusions, even during metaphase. Loss of Arp2/3 function in synd mutants partly reverted defects in apical cap expansion and protrusion remodeling. Myosin II levels were decreased in synd mutants, an observation consistent with the expanded cap phenotype previously reported for Myosin II mutant embryos. We propose that Synd function limits branching activity during cap expansion and affects Myosin II distribution in order to bring about a transition in actin remodeling activity from apical cap expansion to lateral furrow extension.
机译:由ARP2 / 3驱动的分支肌动蛋白网络与细胞迁移等过程中的Actomyosin长丝相互作用。在同性恋果蝇胚泡胚胎胚胎中发生类似的相互作用,其中通过ARP2 / 3驱动的肌动蛋白聚合膨胀在间间发生,并且通过肌蛋白II的接触边缘屈曲以形成沟槽在中期中进行突出。在此,我们在沟槽延伸之前研究Syndapin(Synd),含F-Bar结构域的蛋白质中的F-Bar结构域的蛋白质的作用。我们发现Synd的消耗导致较大的顶帽。超分辨率和TiRF显微镜显示,在中期期间,控制胚胎在间间和短突起期间在盖子中具有长的顶端肌动蛋白突起,而Synd耗尽导致形成持续长突起,即使在中期期间也会形成持续的长突起。在Synd突变体中丢失ARP2 / 3功能部分恢复了顶端盖膨胀和突出重塑中的缺陷。在Synd突变体中,肌蛋白II水平降低,与先前向肌蛋白II突变体胚胎报告的膨胀帽表型一致的观察结果。我们提出了同步函数在帽膨胀期间限制分支活动,并影响肌球蛋白II分布,以便在肌动蛋白的重塑活动中从顶端盖膨胀到侧向沟槽延伸。

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