Arbi Marina, Pefani Dafni-Eleftheria, Kyrousi Christina, Lalioti Maria-Eleni, Kalogeropoulou Argyro, Papanastasiou Anastasios D, Taraviras Stavros, Lygerou Zoi
Laboratory of Biology, School of Medicine, University of Patras, Patras, Greece.
Laboratory of Physiology, School of Medicine University of Patras, Patras, Greece.
EMBO Rep. 2016 Mar;17(3):400-13. doi: 10.15252/embr.201540882. Epub 2016 Feb 4.
Multiciliated cells are terminally differentiated, post-mitotic cells that form hundreds of motile cilia on their apical surface. Defects in multiciliated cells lead to disease, including mucociliary clearance disorders that result from ciliated cell disfunction in airways. The pathway controlling multiciliogenesis, however, remains poorly characterized. We showed that GemC1, previously implicated in cell cycle control, is a central regulator of ciliogenesis. GemC1 is specifically expressed in ciliated epithelia. Ectopic expression of GemC1 is sufficient to induce early steps of multiciliogenesis in airway epithelial cells ex vivo, upregulating McIdas and FoxJ1, key transcriptional regulators of multiciliogenesis. GemC1 directly transactivates the McIdas and FoxJ1 upstream regulatory sequences, and its activity is enhanced by E2F5 and inhibited by Geminin. GemC1-knockout mice are born with airway epithelia devoid of multiciliated cells. Our results identify GemC1 as an essential regulator of ciliogenesis in the airway epithelium and a candidate gene for mucociliary disorders.
多纤毛细胞是终末分化的、有丝分裂后的细胞,在其顶端表面形成数百根运动性纤毛。多纤毛细胞的缺陷会导致疾病,包括由气道中纤毛细胞功能障碍引起的黏液纤毛清除障碍。然而,控制多纤毛发生的途径仍未得到充分表征。我们发现,先前与细胞周期控制有关的GemC1是纤毛发生的核心调节因子。GemC1在纤毛上皮中特异性表达。GemC1的异位表达足以在体外诱导气道上皮细胞多纤毛发生的早期步骤,上调多纤毛发生的关键转录调节因子McIdas和FoxJ1。GemC1直接反式激活McIdas和FoxJ1的上游调控序列,其活性被E2F5增强,被Geminin抑制。GemC1基因敲除小鼠出生时气道上皮缺乏多纤毛细胞。我们的结果确定GemC1是气道上皮中纤毛发生的必需调节因子,也是黏液纤毛疾病的候选基因。