c21orf59/kurly Controls Both Cilia Motility and Polarization.
Publication Year
2016
Type
Journal Article
Abstract
Cilia are microtubule-based projections that function in the movement of extracellular fluid. This requires cilia to be: (1) motile and driven by dynein complexes and (2) correctly polarized on the surface of cells, which requires planar cell polarity (PCP). Few factors that regulate both processes have been discovered. We reveal that C21orf59/Kurly (Kur), a cytoplasmic protein with some enrichment at the base of cilia, is needed for motility; zebrafish mutants exhibit characteristic developmental abnormalities and dynein arm defects. kur was also required for proper cilia polarization in the zebrafish kidney and the larval skin of Xenopus laevis. CRISPR/Cas9 coupled with homologous recombination to disrupt the endogenous kur locus in Xenopus resulted in the asymmetric localization of the PCP protein Prickle2 being lost in mutant multiciliated cells. Kur also makes interactions with other PCP components, including Disheveled. This supports a model wherein Kur plays a dual role in cilia motility and polarization.
Keywords
Animals,
Zebrafish,
signal transduction,
Mutation,
Binding Sites,
Protein Binding,
Gene Expression,
Xenopus Proteins,
Xenopus laevis,
Microtubules,
Embryo, Nonmammalian,
Zebrafish Proteins,
Cell Movement,
Skin,
Kidney,
Larva,
Cell Polarity,
Genetic Loci,
CRISPR-Cas Systems,
Cilia,
Dishevelled Proteins,
Homologous Recombination,
LIM Domain Proteins
Journal
Cell Rep
Volume
14
Issue
8
Pages
1841-9
Date Published
03/2016
ISSN Number
2211-1247
Alternate Journal
Cell Rep
PMID
26904945