XB-ART-52374
Nat Commun
2016 Aug 24;7:12652. doi: 10.1038/ncomms12652.
Show Gene links
Show Anatomy links
The aryl hydrocarbon receptor controls cyclin O to promote epithelial multiciliogenesis.
Villa M
,
Crotta S
,
Dingwell KS
,
Hirst EM
,
Gialitakis M
,
Ahlfors H
,
Smith JC
,
Stockinger B
,
Wack A
.
???displayArticle.abstract???
Epithelia function as barriers against environmental insults and express the transcription factor aryl hydrocarbon receptor (AhR). However, AhR function in these tissues is unknown. Here we show that AhR regulates multiciliogenesis in both murine airway epithelia and in Xenopus laevis epidermis. In air-exposed airway epithelia, induction of factors required for multiciliogenesis, including cyclin O (Ccno) and Multicilin (Mcidas), is AhR dependent, and air exposure induces AhR binding to the Ccno promoter. Submersion and hypoxic conditions impede AhR-dependent Ccno induction. This is mediated by the persistence of Notch signalling, as Notch blockade renders multiciliogenesis and Ccno induction by AhR independent from air exposure. In contrast to Ccno induction, air exposure does not induce the canonical AhR target cytochrome P450 1a1 (Cyp1a1). Inversely, exposure to AhR ligands induces Cyp1a1 but not Ccno and impeded ciliogenesis. These data indicate that AhR involvement in detoxification of environmental pollutants may impede its physiological role, resulting in respiratory pathology.
???displayArticle.pubmedLink??? 27554288
???displayArticle.pmcLink??? PMC4999520
???displayArticle.link??? Nat Commun
???displayArticle.grants??? [+]
MC_U117597139 Medical Research Council , MRC_MC_U117597139 Medical Research Council , MC_U117597140 Medical Research Council , Wellcome Trust
Species referenced: Xenopus laevis
Genes referenced: ahr ccno ctrl cyp1a1 cyp4b1 foxj1.2 hprt1 mcidas notch1
???attribute.lit??? ???displayArticles.show???
References [+] :
Alam,
Notch signaling drives IL-22 secretion in CD4+ T cells by stimulating the aryl hydrocarbon receptor.
2010, Pubmed
Alam, Notch signaling drives IL-22 secretion in CD4+ T cells by stimulating the aryl hydrocarbon receptor. 2010, Pubmed
Arbi, GemC1 controls multiciliogenesis in the airway epithelium. 2016, Pubmed
Beamer, Role of the aryl hydrocarbon receptor (AhR) in lung inflammation. 2013, Pubmed
Beasley, Risk factors for asthma: is prevention possible? 2015, Pubmed
Boon, MCIDAS mutations result in a mucociliary clearance disorder with reduced generation of multiple motile cilia. 2014, Pubmed , Xenbase
Brekman, FOXJ1 prevents cilia growth inhibition by cigarette smoke in human airway epithelium in vitro. 2014, Pubmed
Brody, Ciliogenesis and left-right axis defects in forkhead factor HFH-4-null mice. 2000, Pubmed
Brooks, Multiciliated cells. 2014, Pubmed
Choksi, Switching on cilia: transcriptional networks regulating ciliogenesis. 2014, Pubmed
de Jong, Ciliogenesis in human bronchial epithelial cells cultured at the air-liquid interface. 1994, Pubmed
Denison, Activation of the aryl hydrocarbon receptor by structurally diverse exogenous and endogenous chemicals. 2003, Pubmed
Di Meglio, Activation of the aryl hydrocarbon receptor dampens the severity of inflammatory skin conditions. 2014, Pubmed
Funk, Cyclin O (Ccno) functions during deuterosome-mediated centriole amplification of multiciliated cells. 2015, Pubmed
Gerovac, Submersion and hypoxia inhibit ciliated cell differentiation in a notch-dependent manner. 2014, Pubmed
Guseh, Notch signaling promotes airway mucous metaplasia and inhibits alveolar development. 2009, Pubmed
Hahn, Molecular evolution of two vertebrate aryl hydrocarbon (dioxin) receptors (AHR1 and AHR2) and the PAS family. 1997, Pubmed
Herriges, Lung development: orchestrating the generation and regeneration of a complex organ. 2014, Pubmed
Hogan, Repair and regeneration of the respiratory system: complexity, plasticity, and mechanisms of lung stem cell function. 2014, Pubmed
Kiss, Natural aryl hydrocarbon receptor ligands control organogenesis of intestinal lymphoid follicles. 2011, Pubmed
Lafkas, Therapeutic antibodies reveal Notch control of transdifferentiation in the adult lung. 2015, Pubmed
Lavine, Aryl hydrocarbon receptors in the frog Xenopus laevis: two AhR1 paralogs exhibit low affinity for 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD). 2005, Pubmed , Xenbase
Lee, AHR drives the development of gut ILC22 cells and postnatal lymphoid tissues via pathways dependent on and independent of Notch. 2011, Pubmed
Li, Exogenous stimuli maintain intraepithelial lymphocytes via aryl hydrocarbon receptor activation. 2011, Pubmed
Marcet, Control of vertebrate multiciliogenesis by miR-449 through direct repression of the Delta/Notch pathway. 2011, Pubmed , Xenbase
Marshall, p73 Is Required for Multiciliogenesis and Regulates the Foxj1-Associated Gene Network. 2016, Pubmed
McMillan, The aryl hydrocarbon receptor sans xenobiotics: endogenous function in genetic model systems. 2007, Pubmed
Mori, Notch3-Jagged signaling controls the pool of undifferentiated airway progenitors. 2015, Pubmed
Morimoto, Canonical Notch signaling in the developing lung is required for determination of arterial smooth muscle cells and selection of Clara versus ciliated cell fate. 2010, Pubmed
Nemajerova, TAp73 is a central transcriptional regulator of airway multiciliogenesis. 2016, Pubmed
NULL, Health effects of outdoor air pollution. Committee of the Environmental and Occupational Health Assembly of the American Thoracic Society. 1996, Pubmed
Ohura, Discovery of novel halogenated polycyclic aromatic hydrocarbons in urban particulate matters: occurrence, photostability, and AhR activity. 2009, Pubmed
Ostrowski, Inhibition of ciliated cell differentiation by fluid submersion. 1995, Pubmed
Pardo-Saganta, Parent stem cells can serve as niches for their daughter cells. 2015, Pubmed
Park, Dishevelled controls apical docking and planar polarization of basal bodies in ciliated epithelial cells. 2008, Pubmed , Xenbase
Qiu, The aryl hydrocarbon receptor regulates gut immunity through modulation of innate lymphoid cells. 2012, Pubmed
Rannug, Certain photooxidized derivatives of tryptophan bind with very high affinity to the Ah receptor and are likely to be endogenous signal substances. 1987, Pubmed
Schmidt, Characterization of a murine Ahr null allele: involvement of the Ah receptor in hepatic growth and development. 1996, Pubmed
Schmidt, Ah receptor signaling pathways. 1996, Pubmed
Song, miR-34/449 miRNAs are required for motile ciliogenesis by repressing cp110. 2014, Pubmed , Xenbase
Sorokin, Reconstructions of centriole formation and ciliogenesis in mammalian lungs. 1968, Pubmed
Steinman, An electron microscopic study of ciliogenesis in developing epidermis and trachea in the embryo of Xenopus laevis. 1968, Pubmed , Xenbase
Stockinger, The aryl hydrocarbon receptor: multitasking in the immune system. 2014, Pubmed
Stubbs, Multicilin promotes centriole assembly and ciliogenesis during multiciliate cell differentiation. 2012, Pubmed , Xenbase
Tan, Myb promotes centriole amplification and later steps of the multiciliogenesis program. 2013, Pubmed , Xenbase
Terré, GEMC1 is a critical regulator of multiciliated cell differentiation. 2016, Pubmed
Tilley, Cilia dysfunction in lung disease. 2015, Pubmed
Tsao, Notch signaling controls the balance of ciliated and secretory cell fates in developing airways. 2009, Pubmed
Wallmeier, Mutations in CCNO result in congenital mucociliary clearance disorder with reduced generation of multiple motile cilia. 2014, Pubmed , Xenbase
Werner, Understanding ciliated epithelia: the power of Xenopus. 2012, Pubmed , Xenbase
You, Growth and differentiation of mouse tracheal epithelial cells: selection of a proliferative population. 2002, Pubmed
You, Role of f-box factor foxj1 in differentiation of ciliated airway epithelial cells. 2004, Pubmed
Zhang, Jagged1 is the major regulator of Notch-dependent cell fate in proximal airways. 2013, Pubmed