Literature DB >> 20392740

Opposing Fgf and Bmp activities regulate the specification of olfactory sensory and respiratory epithelial cell fates.

Esther Maier1, Jonas von Hofsten, Hanna Nord, Marie Fernandes, Hunki Paek, Jean M Hébert, Lena Gunhaga.   

Abstract

The olfactory sensory epithelium and the respiratory epithelium are derived from the olfactory placode. However, the molecular mechanisms regulating the differential specification of the sensory and the respiratory epithelium have remained undefined. To address this issue, we first identified Msx1/2 and Id3 as markers for respiratory epithelial cells by performing quail chick transplantation studies. Next, we established chick explant and intact chick embryo assays of sensory/respiratory epithelial cell differentiation and analyzed two mice mutants deleted of Bmpr1a;Bmpr1b or Fgfr1;Fgfr2 in the olfactory placode. In this study, we provide evidence that in both chick and mouse, Bmp signals promote respiratory epithelial character, whereas Fgf signals are required for the generation of sensory epithelial cells. Moreover, olfactory placodal cells can switch between sensory and respiratory epithelial cell fates in response to Fgf and Bmp activity, respectively. Our results provide evidence that Fgf activity suppresses and restricts the ability of Bmp signals to induce respiratory cell fate in the nasal epithelium. In addition, we show that in both chick and mouse the lack of Bmp or Fgf activity results in disturbed placodal invagination; however, the fate of cells in the remaining olfactory epithelium is independent of morphological movements related to invagination. In summary, we present a conserved mechanism in amniotes in which Bmp and Fgf signals act in an opposing manner to regulate the respiratory versus sensory epithelial cell fate decision.

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Year:  2010        PMID: 20392740      PMCID: PMC2860246          DOI: 10.1242/dev.051219

Source DB:  PubMed          Journal:  Development        ISSN: 0950-1991            Impact factor:   6.868


  54 in total

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4.  Mesenchymal/epithelial induction mediates olfactory pathway formation.

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5.  Antagonistic interactions between FGF and BMP signaling pathways: a mechanism for positioning the sites of tooth formation.

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9.  Opposing effects of bone morphogenetic proteins on neuron production and survival in the olfactory receptor neuron lineage.

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Journal:  Development       Date:  2000-12       Impact factor: 6.868

Review 10.  Longitudinal organization of the anterior neural plate and neural tube.

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  18 in total

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3.  The indirect role of fibroblast growth factor-8 in defining neurogenic niches of the olfactory/GnRH systems.

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4.  Systems biology of facial development: contributions of ectoderm and mesenchyme.

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Review 5.  Signaling mechanisms controlling cranial placode neurogenesis and delamination.

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Review 6.  Sculpting the skull through neurosensory epithelial-mesenchymal signaling.

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7.  Reproductive dysfunction and decreased GnRH neurogenesis in a mouse model of CHARGE syndrome.

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8.  Zfp423/OAZ mutation reveals the importance of Olf/EBF transcription activity in olfactory neuronal maturation.

Authors:  Yang A Roby; Michael A Bushey; Li E Cheng; Heather M Kulaga; Se-Jin Lee; Randall R Reed
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9.  FGFR3 induces degradation of BMP type I receptor to regulate skeletal development.

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Review 10.  GnRH, anosmia and hypogonadotropic hypogonadism--where are we?

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