肌球蛋白
细胞生物学
振荡(细胞信号)
生物
光遗传学
肌球蛋白轻链激酶
肌球蛋白头
磷酸酶
生物物理学
神经科学
遗传学
磷酸化
作者
Xiang Qin,Édouard Hannezo,Thomas Mangeat,Chang Liu,Pralay Majumder,Jiaying Liu,Valérie Choesmel-Cadamuro,Jocelyn A. McDonald,Yiyao Liu,Bin Yi,Xiaobo Wang
标识
DOI:10.1038/s41467-018-03574-5
摘要
Abstract The actomyosin cytoskeleton, a key stress-producing unit in epithelial cells, oscillates spontaneously in a wide variety of systems. Although much of the signal cascade regulating myosin activity has been characterized, the origin of such oscillatory behavior is still unclear. Here, we show that basal myosin II oscillation in Drosophila ovarian epithelium is not controlled by actomyosin cortical tension, but instead relies on a biochemical oscillator involving ROCK and myosin phosphatase. Key to this oscillation is a diffusive ROCK flow, linking junctional Rho1 to medial actomyosin cortex, and dynamically maintained by a self-activation loop reliant on ROCK kinase activity. In response to the resulting myosin II recruitment, myosin phosphatase is locally enriched and shuts off ROCK and myosin II signals. Coupling Drosophila genetics, live imaging, modeling, and optogenetics, we uncover an intrinsic biochemical oscillator at the core of myosin II regulatory network, shedding light on the spatio-temporal dynamics of force generation.
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