Celsr1 is required for the generation of polarity at multiple levels of the mouse oviduct

Dongbo Shi, Kouji Komatsu, Mayumi Hirao, Yayoi Toyooka, Hiroshi Koyama, Fadel Tissir, André M. Goffinet, Tadashi Uemura, Toshihiko Fujimori*

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

86 Citations (Scopus)

Abstract

The oviduct is an important organ in reproduction where fertilization occurs, and through which the fertilized eggs are carried to the uterus in mammals. This organ is highly polarized, where the epithelium forms longitudinal folds along the ovary-uterus axis, and the epithelial multicilia beat towards the uterus to transport the ovulated ova. Here, we analyzed the postnatal development of mouse oviduct and report that multilevel polarities of the oviduct are regulated by a planar cell polarity (PCP) gene, Celsr1. In the epithelium, Celsr1 is concentrated in the specific cellular boundaries perpendicular to the ovary-uterus axis from postnatal day 2. We found a new feature of cellular polarity in the oviduct – the apical surface of epithelial cells is elongated along the ovary-uterus axis. In Celsr1-deficient mice, the ciliary motion is not orchestrated along the ovary-uterus axis and the transport ability of beating cilia is impaired. Epithelial cells show less elongation and randomized orientation, and epithelial folds show randomized directionality and ectopic branches in the mutant. Our mosaic analysis suggests that the geometry of epithelial cells is primarily regulated by Celsr1 and as a consequence the epithelial folds are aligned. Taken together, we reveal the characteristics of the multilevel polarity formation processes in the mouse oviduct epithelium and suggest a novel function of the PCP pathway for proper tissue morphogenesis.

Original languageEnglish
Pages (from-to)4558-4568
Number of pages11
JournalDevelopment (Cambridge)
Volume141
Issue number23
DOIs
Publication statusPublished - 1 Dec 2014
Externally publishedYes

Keywords

  • Cell shape
  • Celsr1/Flamingo
  • Cilia
  • Epithelial morphogenesis
  • Oviduct
  • Planar cell polarity

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