ARHGEF3 Regulates Hair Follicle Morphogenesis

Krithika Kalyanakrishnan, Amy Beaudin, Alexandra Jette, Sarah Ghezelbash, Diana Ioana Hotea, Jie Chen, Philippe Lefrancois, Melanie Laurin
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Abstract

During embryogenesis, cells arrange into precise patterns that enable tissues and organs to develop specialized functions. Despite its critical importance, the molecular choreography behind these collective cellular behaviors remains elusive, posing a major challenge in developmental biology and limiting advances in regenerative medicine. By using the mouse hair follicle as a mini-organ system to study the formation of bud-like structures during embryonic development, our work uncovers a crucial role for the Rho GTPase regulator ARHGEF3 in hair follicle morphogenesis. We demonstrate that Arhgef3 expression is upregulated at the onset of hair follicle placode formation. In Arhgef3 knockout animals, we observed defects in placode cell compaction, leading to impaired hair follicle downgrowth. Through cell culture models, we show that ARHGEF3 promotes F-actin accumulation at the cell cortex and P-cadherin enrichment at cell-cell junctions. Collectively, our study identifies ARHGEF3 as a new regulator of cell shape rearrangements during hair placode morphogenesis, warranting further exploration of its role in other epithelial appendages that arise from similar developmental processes.
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ARHGEF3 调控毛囊的形态发生
在胚胎发育过程中,细胞排列成精确的模式,使组织和器官形成专门的功能。尽管这一点至关重要,但这些细胞集体行为背后的分子编排仍然难以捉摸,这给发育生物学带来了重大挑战,也限制了再生医学的发展。通过将小鼠毛囊作为一个微型器官系统来研究胚胎发育过程中芽样结构的形成,我们的研究发现了 Rho GTPase 调节因子 ARHGEF3 在毛囊形态发生中的关键作用。我们证明,Arhgef3的表达在毛囊胎座形成初期上调。在 Arhgef3 基因敲除的动物中,我们观察到胎盘细胞压实缺陷,从而导致毛囊向下生长受损。通过细胞培养模型,我们发现 ARHGEF3 能促进 F-肌动蛋白在细胞皮层的聚集以及 P-cadherin在细胞-细胞连接处的富集。总之,我们的研究发现 ARHGEF3 是毛胎盘形态发生过程中细胞形状重排的一个新调节因子,值得进一步探讨它在由类似发育过程产生的其他上皮附属物中的作用。
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