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Counter-rotational cell flows drive morphological and cell fate asymmetries in mammalian hair follicles

机译:反向旋转的细胞流驱动哺乳动物毛囊的形态和细胞命运不对称

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摘要

Organ morphogenesis is a complex process coordinated by cell specification, epithelial-mesenchymal interactions, and tissue polarity. A striking example is the pattern of regularly spaced, globally aligned mammalian hair follicles, which emerges through epidermal-dermal signaling and planar polarized morphogenesis. Here, using live-imaging, we discover that developing hair follicles polarize through dramatic cell rearrangements organized in a counter-rotational pattern of cell flows. Upon hair placode induction, Shh signaling specifies a radial pattern of progenitor fates that, together with planar cell polarity (PCP), induce counter-rotational rearrangements through myosin and ROCK-dependent polarized neighbor exchanges. Importantly, these cell rearrangements also establish cell fate asymmetry by repositioning radial progenitors along the anterior-posterior axis. These movements concurrently displace associated mesenchymal cells, which then signal asymmetrically to maintain polarized cell fates. Our results demonstrate how spatial patterning and tissue polarity generate an unexpected collective cell behavior that in turn, establishes both morphological and cell fate asymmetry.
机译:器官形态发生是由细胞规格,上皮-间质相互作用和组织极性协调的复杂过程。一个显着的例子是规则排列的,整体对齐的哺乳动物毛囊的模式,该模式通过表皮-皮肤信号传导和平面极化形态发生而出现。在这里,使用实时成像,我们发现发育中的毛囊通过以反向流动的细胞流模式组织的戏剧性细胞重排而发生极化。在诱导发斑时,Shh信号指定了祖先命运的放射状,它与平面细胞极性(PCP)一起,通过肌球蛋白和ROCK依赖性极化邻居交换诱导反向旋转重排。重要的是,这些细胞重排还通过沿前后轴重新定位放射状祖细胞来建立细胞命运的不对称性。这些运动同时置换了相关的间充质细胞,然后它们不对称地发出信号以维持极化的细胞命运。我们的结果表明,空间模式和组织极性如何产生意想不到的集体细胞行为,进而建立了形态学和细胞命运的不对称性。

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