Proceedings of the National Academy of Sciences · 2007 · 40 citations · 32 references
Cilia ProjectIntraflagellar TransportCytoskeletonCiliary BeatingCellular NeurobiologyCellular PhysiologySignaling PathwayEpendymaZebrafish EmbryosIntercellular CommunicationCell SignalingCell PhysiologyCell BiologyLength MaintenanceSignal TransductionDevelopmental BiologyPhysiologyInositol Kinase Ipk1Intracellular TraffickingCellular BiochemistryMedicine
Cilia project from cells as membranous extensions, with microtubule structural cores assembling from basal bodies by intraflagellar transport (IFT). Here, we report a ciliary role for the inositol 1,3,4,5,6-pentakisphosphate 2-kinase (Ipk1) that generates inositol hexakisphosphate. In zebrafish embryos, reducing Ipk1 levels inhibited ciliary beating in Kupffer's vesicle and decreased ciliary length in the spinal canal, pronephric ducts, and Kupffer's vesicle. Electron microscopy showed that ciliary axonemal structures were not grossly altered. However, coincident knockdown of Ipk1 and IFT88 or IFT57 had synergistic perturbations. With GFP-Ipk1 enriched in centrosomes and basal bodies, we propose that Ipk1 plays a previously uncharacterized role in ciliary function.
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Shigenori Nonaka, Yosuke Tanaka, Yasushi Okada et al. · Cell · 1998 · 1.6K citations · Full text
Two Populations of Node Monocilia Initiate Left-Right Asymmetry in the Mouse
James McGrath, Stefan Somlo, Svetlana Makova et al. · Cell · 2003 · 803 citations · Full text