PubMed:27836966 JSONTXT 7 Projects

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Id Subject Object Predicate Lexical cue
T1 87-525 DRI_Background denotes In this work, we combine genetic perturbation, time-lapse imaging and quantitative image analysis to investigate how pulsatile actomyosin contractility drives cell oscillations, apical cell contraction and tissue closure during morphogenesis of the amnioserosa, the main force-generating tissue during the dorsal closure in Drosophila We show that Myosin activity determines the oscillatory and contractile behaviour of amnioserosa cells.
T2 526-615 DRI_Background denotes Reducing Myosin activity prevents cell shape oscillations and reduces cell contractility.
T3 616-864 DRI_Background denotes By contrast, increasing Myosin activity increases the amplitude of cell shape oscillations and the time cells spend in the contracted phase relative to the expanded phase during an oscillatory cycle, promoting cell contractility and tissue closure.
T4 865-1170 DRI_Outcome denotes Furthermore, we show that in AS cells, Rok controls Myosin foci formation and Mbs regulates not only Myosin phosphorylation but also adhesion dynamics through control of Moesin phosphorylation, showing that Mbs coordinates actomyosin contractility with cell-cell adhesion during amnioserosa morphogenesis.