Centre de recherche en cancérologie de l'Université Laval, Centre Hospitalier Universitaire de Québec , L'Hôtel-Dieu de Québec, 9 rue McMahon, Québec QC G1R 2J6 , Canada.
Biol Open. 2012 Jul 15;1(7):677-91. doi: 10.1242/bio.20121701. Epub 2012 May 29.
Hox genes encode transcription factors controlling complex developmental processes in various organs. Little is known, however, about how HOX proteins control cell fate. Herein, we demonstrate that the goblet cell metaplasia observed in lung airways from Hoxa5(-/-) mice originates from the transdifferentiation of Clara cells. Reduced CC10 expression in Hoxa5(-/-) embryos indicates that altered cell specification occurs prior to birth. The loss of Hoxa5 function does not preclude airway repair after naphthalene exposure, but the regenerated epithelium presents goblet cell metaplasia and less CC10-positive cells, demonstrating the essential role of Hoxa5 for correct differentiation. Goblet cell metaplasia in Hoxa5(-/-) mice is a FOXA2-independent process. However, it is associated with increased Notch signaling activity. Consistent with these findings, expression levels of activated NOTCH1 and the effector gene HEY2 are enhanced in patients with chronic obstructive pulmonary disease. In vivo administration of a γ-secretase inhibitor attenuates goblet cell metaplasia in Hoxa5(-/-) mice, highlighting the contribution of Notch signaling to the phenotype and suggesting a potential therapeutic strategy to inhibit goblet cell differentiation and mucus overproduction in airway diseases. In summary, the loss of Hoxa5 function in lung mesenchyme impacts on epithelial cell fate by modulating Notch signaling.
Hox 基因编码转录因子,可控制多种器官的复杂发育过程。然而,人们对 HOX 蛋白如何控制细胞命运知之甚少。本文证明,Hoxa5(-/-) 小鼠肺气道中观察到的杯状细胞化生源自 Clara 细胞的转分化。Hoxa5(-/-) 胚胎中 CC10 表达减少表明细胞特化发生在出生前。Hoxa5 功能丧失并不排除萘暴露后气道修复,但再生的上皮呈现杯状细胞化生和较少的 CC10 阳性细胞,表明 Hoxa5 对正确分化至关重要。Hoxa5(-/-) 小鼠中的杯状细胞化生是 FOXA2 非依赖性过程。然而,它与 Notch 信号活性增加有关。与这些发现一致,慢性阻塞性肺疾病患者中激活的 NOTCH1 和效应基因 HEY2 的表达水平增强。体内给予 γ-分泌酶抑制剂可减轻 Hoxa5(-/-) 小鼠中的杯状细胞化生,突出了 Notch 信号对表型的贡献,并提示抑制气道疾病中杯状细胞分化和黏液过度产生的潜在治疗策略。总之,肺间质中 Hoxa5 功能的丧失通过调节 Notch 信号影响上皮细胞命运。