Faculty of Medicine, Department of Obstetrics, Gynecology and Reproduction, Université Laval, CHU de Québec Research Center (CHUL), Quebec City, QC, Canada.
Faculty of Pharmacy, Université Laval, CHU de Québec Research Center (CHUL), Quebec City, QC, Canada.
FASEB J. 2020 Jun;34(6):7593-7609. doi: 10.1096/fj.202000328R. Epub 2020 Apr 13.
Primary cilia (PC) are organelles that sense and respond to dynamic changes of the extracellular milieu through the regulation of target genes. By using the epididymis as a model system, we determined the contribution of primary cilia in the regulation of epithelial cell functions through the transduction of the Hedgehog (Hh) signaling pathway. Both Sonic (SHH) and Indian Hedgehog (IHH) ligands were detected in epididymal epithelial cells by confocal microscopy and found secreted in the extracellular space. Gene expression profiling preformed on ciliated epithelial cells indicated that 153 and 1052 genes were differentially expressed following treatment with the Hh agonist SAG or the Hh antagonist cyclopamine (Cyclo), respectively. Strikingly, gene ontology analysis indicated that genes associated with immune response were the most affected following Hh modulation. The contribution of epididymal PC to canonical Hh pathway transduction was validated by ciliobrevin D treatment, which induced a significant decrease in PC length and a reduction in the expression Hh signaling targets. Such findings bring us closer to a molecular understanding of the subtle immune balance observed in some epithelia, including the epididymis and the intestine, which are organs featuring both tolerance toward autoimmune spermatozoa (or commensal bacteria) and defense against pathogens.
初级纤毛(PC)是一种细胞器,通过调节靶基因,感知并响应细胞外环境的动态变化。我们使用附睾作为模型系统,通过 Hedgehog(Hh)信号通路的转导,确定了初级纤毛在调节上皮细胞功能中的作用。共聚焦显微镜检测到附睾上皮细胞中存在 Sonic(SHH)和 Indian Hedgehog(IHH)配体,并发现它们分泌到细胞外空间。对纤毛上皮细胞进行的基因表达谱分析表明,分别用 Hh 激动剂 SAG 或 Hh 拮抗剂环巴胺(Cyclo)处理后,有 153 和 1052 个基因的表达存在差异。引人注目的是,基因本体分析表明,Hh 调节后,与免疫反应相关的基因受到的影响最大。纤毛布雷文 D 处理验证了附睾 PC 对经典 Hh 途径转导的贡献,该处理诱导 PC 长度显著缩短,并降低了 Hh 信号靶标的表达。这些发现使我们更深入地了解了一些上皮组织中观察到的微妙免疫平衡,包括附睾和肠道,这些器官对自身免疫性精子(或共生细菌)具有耐受性,并能抵御病原体。