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Planar cell polarity effector gene Intu regulates cell fate-specific differentiation of keratinocytes through the primary cilia

机译:平面细胞极性效应基因Intu通过原发性纤毛调节角质形成细胞的细胞命运特异性分化

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摘要

Genes involved in the planar cell polarity (PCP) signaling pathway are essential for a number of developmental processes in mammals, such as convergent extension and ciliogenesis. Tissue-specific PCP effector genes of the PCP signaling pathway are believed to mediate PCP signals in a tissue-and cell type-specific manner. However, how PCP signaling controls the morphogenesis of mammalian tissues remains unclear. In this study, we investigated the role of inturned (Intu), a tissue-specific PCP effector gene, during hair follicle formation in mice. Tissue-specific disruption of Intu in embryonic epidermis resulted in hair follicle morphogenesis arrest because of the failure of follicular keratinocyte to differentiate. Targeting Intu in the epidermis resulted in almost complete loss of primary cilia in epidermal and follicular keratinocytes, and a suppressed hedgehog signaling pathway. Surprisingly, the epidermal stratification and differentiation programs and barrier function were not affected. These results demonstrate that tissue-specific PCP effector genes of the PCP signaling pathway control the differentiation of keratinocytes through the primary cilia in a cell fate-and context-dependent manner, which may be critical in orchestrating the propagation and interpretation of polarity signals established by the core PCP components.
机译:涉及平面细胞极性(PCP)信号传导途径的基因对于哺乳动物的许多发育过程(例如,趋同延伸和纤毛发生)至关重要。据信PCP信号通路的组织特异性PCP效应基因以组织和细胞类型特异性的方式介导PCP信号。但是,PCP信号传导如何控制哺乳动物组织的形态发生仍不清楚。在这项研究中,我们调查了在小鼠毛囊形成过程中组织特异性PCP效应基因内向(Intu)的作用。胚胎表皮中Intu的组织特异性破坏导致毛囊形态发生停滞,因为毛囊角质形成细胞无法分化。在表皮中靶向Intu导致表皮和滤泡性角质形成细胞中的初级纤毛几乎完全丧失,并且刺猬信号通路受到抑制。令人惊讶的是,表皮的分层和分化程序以及屏障功能没有受到影响。这些结果表明,PCP信号通路的组织特异性PCP效应基因以细胞命运和背景相关的方式控制通过原初纤毛的角质形成细胞的分化,这可能对协调由以下方式建立的极性信号的传播和解释至关重要。 PCP的核心组件。

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