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Mechanosensation of Tight Junctions Depends on ZO-1 Phase Separation and Flow

机译:紧密连接的机械化取决于ZO-1相分离和流量

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Cell-cell junctions respond to mechanical forces by changing their organization and function. To gain insight into the mechanochemical basis underlying junction mechanosensitivity, we analyzed tight junction (TJ) formation between the enveloping cell layer (EVL) and the yolk syncytial layer (YSL) in the gastrulating zebrafish embryo. We found that the accumulation of Zonula Occludens-1 (ZO-1) at TJs closely scales with tension of the adjacent actomyosin network, revealing that these junctions are mechano-sensitive. Actomyosin tension triggers ZO-1 junctional accumulation by driving retrograde actomyosin flow within the YSL, which transports non-junctional ZO-1 clusters toward the TJ. Non-junctional ZO-1 clusters form by phase separation, and direct actin binding of ZO-1 is required for stable incorporation of retrogradely flowing ZO-1 clusters into TJs. If the formation and/or junctional incorporation of ZO-1 clusters is impaired, then TJs lose their mechanosensitivity, and consequently, EVL-YSL movement is delayed. Thus, phase separation and flow of non-junctional ZO-1 confer mechanosensitivity to TJs.
机译:细胞连接通过改变其组织和功能来响应机械力。为了深入了解连接机械敏感性的机械化学基础,我们分析了原肠胚中包裹细胞层(EVL)和卵黄合胞体层(YSL)之间的紧密连接(TJ)形成。我们发现在TJs处闭塞带-1(ZO-1)的积累与相邻肌动球蛋白网络的张力密切相关,表明这些连接是机械敏感的。肌动球蛋白张力通过驱动YSL内的逆行肌动球蛋白流触发ZO-1连接积聚,从而将非连接ZO-1簇运输到TJ。非连接ZO-1簇通过相分离形成,ZO-1的直接肌动蛋白结合需要稳定地将逆行流动的ZO-1簇并入TJs。如果ZO-1簇的形成和/或结合受损,则TJ失去机械敏感性,因此EVL-YSL运动延迟。因此,非连接ZO-1的相分离和流动赋予TJs机械敏感性。

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