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Chiral Cilia Orientation in the Left-Right Organizer

  • Rita R. Ferreira
  • , Guillaume Pakula
  • , Lhéanna Klaeyle
  • , Hajime Fukui
  • , Andrej Vilfan
  • , Willy Supatto
  • , Julien Vermot
  • Institut de Génétique et de Biologie Moléculaire et Cellulaire
  • Centre national de la recherche scientifique
  • INSERM U869
  • Université de Strasbourg
  • Department of Biochemistry and Molecular and Structural Biology
  • Max-Planck-Inst. F. S.

Research output: Contribution to journalArticlepeer-review

Abstract

Chirality is a property of asymmetry between an object and its mirror image. Most biomolecules and many cell types are chiral. In the left-right organizer (LRO), cilia-driven flows transfer such chirality to the body scale. However, the existence of cellular chirality within tissues remains unknown. Here, we investigate this question in Kupffer's vesicle (KV), the zebrafish LRO. Quantitative live imaging reveals that cilia populating the KV display asymmetric orientation between the right and left sides, resulting in a chiral structure, which is different from the chiral cilia rotation. This KV chirality establishment is dynamic and depends on planar cell polarity. While its impact on left-right (LR) symmetry breaking remains unclear, we show that this asymmetry does not depend on the LR signaling pathway or flow. This work identifies a different type of tissue asymmetry and sheds light on chirality genesis in developing tissues. During left-right axis specification, motile cilia are required for breaking the axis of symmetry. In this context, Ferreira et al. show that cilia orientation is chiral, defining an alternative type of asymmetry in the embryo.

Original languageEnglish
Pages (from-to)2008-2016.e4
JournalCell Reports
Volume25
Issue number8
DOIs
Publication statusPublished - 20 Nov 2018

Keywords

  • Danio rerio
  • Dnaaf1/Lrrc50
  • PKD2/PC2/TRPP2/polycistin-2
  • Rock2B
  • blebbistatin
  • lrdr1
  • nodal
  • spaw
  • tissue asymmetry
  • trilobite/Vangl2

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