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Loss of Dishevelleds disrupts planar polarity in ependymal motile cilia and results in hydrocephalus

Authors :
Jr Gang Cheng
Vicente Herranz-Pérez
Toshiro Inubushi
William D. Snider
Anthony Wynshaw-Boris
Haim Belinson
José Manuel García-Verdugo
Arturo Alvarez-Buylla
Jin Nakatani
Shinya Ohata
Source :
Neuron, vol 83, iss 3
Publication Year :
2014

Abstract

Defects in ependymal (E) cells, which line the ventricle and generate cerebrospinal fluid flow through ciliary beating, can cause hydrocephalus. Dishevelled genes (Dvls) are essential for Wnt signaling, and Dvl2 has been shown to localize to the rootlet of motile cilia. Using the hGFAP-Cre;Dvl1(-/-);2(flox/flox);3(+/-) mouse, we show that compound genetic ablation of Dvls causes hydrocephalus. In hGFAP-Cre;Dvl1(-/-);2(flox/flox);3(+/-) mutants, E cells differentiated normally, but the intracellular and intercellular rotational alignments of ependymal motile cilia were disrupted. As a consequence, the fluid flow generated by the hGFAP-Cre;Dvl1(-/-);2(flox/flox);3(+/-) E cells was significantly slower than that observed in control mice. Dvls were also required for the proper positioning of motile cilia on the apical surface. Tamoxifen-induced conditional removal of Dvls in adult mice also resulted in defects in intracellular rotational alignment and positioning of ependymal motile cilia. These results suggest that Dvls are continuously required for E cell planar polarity and may prevent hydrocephalus.

Details

ISSN :
10974199
Volume :
83
Issue :
3
Database :
OpenAIRE
Journal :
Neuron
Accession number :
edsair.doi.dedup.....5200527f66f3245f4903447e5c27a675