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Summary Anatomy Item Literature (444) Expression Attributions Wiki
XB-ANAT-3716

Papers associated with cilium

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Median facial clefts in Xenopus laevis: roles of retinoic acid signaling and homeobox genes., Kennedy AE., Dev Biol. May 1, 2012; 365 (1): 229-40.                              


Spinal cord regeneration in Xenopus tadpoles proceeds through activation of Sox2-positive cells., Gaete M., Neural Dev. April 26, 2012; 7 13.            


The formation and positioning of cilia in Ciona intestinalis embryos in relation to the generation and evolution of chordate left-right asymmetry., Thompson H., Dev Biol. April 15, 2012; 364 (2): 214-23.


A functional scaffold of CNS neurons for the vertebrates: the developing Xenopus laevis spinal cord., Roberts A., Dev Neurobiol. April 1, 2012; 72 (4): 575-84.        


Molecular characterization of a KIF3A-like kinesin gene in the testis of the Chinese fire-bellied newt Cynops orientalis., Hu JR., Mol Biol Rep. April 1, 2012; 39 (4): 4207-14.


Understanding ciliated epithelia: the power of Xenopus., Werner ME., Genesis. March 1, 2012; 50 (3): 176-85.        


Histology of plastic embedded amphibian embryos and larvae., Kurth T., Genesis. March 1, 2012; 50 (3): 235-50.                                


Polarity proteins are required for left-right axis orientation and twin-twin instruction., Vandenberg LN., Genesis. March 1, 2012; 50 (3): 219-34.                    


RFX2 is broadly required for ciliogenesis during vertebrate development., Chung MI., Dev Biol. March 1, 2012; 363 (1): 155-65.                                                          


The gastrocoel roof plate in embryos of different frogs., Sáenz-Ponce N., Differentiation. February 1, 2012; 83 (2): S62-6.


Linking early determinants and cilia-driven leftward flow in left-right axis specification of Xenopus laevis: a theoretical approach., Schweickert A., Differentiation. February 1, 2012; 83 (2): S67-77.      


Prominin-1 localizes to the open rims of outer segment lamellae in Xenopus laevis rod and cone photoreceptors., Han Z., Invest Ophthalmol Vis Sci. January 25, 2012; 53 (1): 361-73.


Generation of a genetically encoded marker of rod photoreceptor outer segment growth and renewal., Willoughby JJ., Biol Open. January 15, 2012; 1 (1): 30-6.            


Serotonin signaling is required for Wnt-dependent GRP specification and leftward flow in Xenopus., Beyer T., Curr Biol. January 10, 2012; 22 (1): 33-9.                


Multicilin promotes centriole assembly and ciliogenesis during multiciliate cell differentiation., Stubbs JL., Nat Cell Biol. January 8, 2012; 14 (2): 140-7.            


Steric volume exclusion sets soluble protein concentrations in photoreceptor sensory cilia., Najafi M., Proc Natl Acad Sci U S A. January 3, 2012; 109 (1): 203-8.


Rhodopsin mutant P23H destabilizes rod photoreceptor disk membranes., Haeri M., PLoS One. January 1, 2012; 7 (1): e30101.            


Laterality defects are influenced by timing of treatments and animal model., Vandenberg LN., Differentiation. January 1, 2012; 83 (1): 26-37.          


Plakophilin-3 is required for late embryonic amphibian development, exhibiting roles in ectodermal and neural tissues., Munoz WA., PLoS One. January 1, 2012; 7 (4): e34342.              


Direct measurement of diffusion in olfactory cilia using a modified FRAP approach., Alevra M., PLoS One. January 1, 2012; 7 (7): e39628.        


Actin and microtubules drive differential aspects of planar cell polarity in multiciliated cells., Werner ME., J Cell Biol. October 3, 2011; 195 (1): 19-26.          


Distinct axonal projections from two types of olfactory receptor neurons in the middle chamber epithelium of Xenopus laevis., Nakamuta S., Cell Tissue Res. October 1, 2011; 346 (1): 27-33.


MicroRNA-based silencing of Delta/Notch signaling promotes multiple cilia formation., Marcet B., Cell Cycle. September 1, 2011; 10 (17): 2858-64.


In situ visualization of protein interactions in sensory neurons: glutamic acid-rich proteins (GARPs) play differential roles for photoreceptor outer segment scaffolding., Ritter LM., J Neurosci. August 3, 2011; 31 (31): 11231-43.              


IP3 signaling is required for cilia formation and left-right body axis determination in Xenopus embryos., Hatayama M., Biochem Biophys Res Commun. July 8, 2011; 410 (3): 520-4.      


Microfluidic characterization of cilia-driven fluid flow using optical coherence tomography-based particle tracking velocimetry., Jonas S., Biomed Opt Express. July 1, 2011; 2 (7): 2022-34.                  


Control of vertebrate multiciliogenesis by miR-449 through direct repression of the Delta/Notch pathway., Marcet B., Nat Cell Biol. June 1, 2011; 13 (6): 693-9.


The location of olfactory receptors within olfactory epithelium is independent of odorant volatility and solubility., Abaffy T., BMC Res Notes. May 6, 2011; 4 137.        


Nde1-mediated inhibition of ciliogenesis affects cell cycle re-entry., Kim S., Nat Cell Biol. April 1, 2011; 13 (4): 351-60.            


Sonic hedgehog signaling is decoded by calcium spike activity in the developing spinal cord., Belgacem YH., Proc Natl Acad Sci U S A. March 15, 2011; 108 (11): 4482-7.        


1001 model organisms to study cilia and flagella., Vincensini L., Biol Cell. March 1, 2011; 103 (3): 109-30.


Embryonic frog epidermis: a model for the study of cell-cell interactions in the development of mucociliary disease., Dubaissi E., Dis Model Mech. March 1, 2011; 4 (2): 179-92.                        


Specification of ion transport cells in the Xenopus larval skin., Quigley IK., Development. February 1, 2011; 138 (4): 705-14.                                          


A role for central spindle proteins in cilia structure and function., Smith KR., Cytoskeleton (Hoboken). February 1, 2011; 68 (2): 112-24.


Strange as it may seem: the many links between Wnt signaling, planar cell polarity, and cilia., Wallingford JB., Genes Dev. February 1, 2011; 25 (3): 201-13.  


Contexts for dopamine specification by calcium spike activity in the CNS., Velázquez-Ulloa NA., J Neurosci. January 5, 2011; 31 (1): 78-88.                    


[The importance of model organisms to study cilia and flagella biology]., Vincensini L., Biol Aujourdhui. January 1, 2011; 205 (1): 5-28.


Regulation of basal body and ciliary functions by Diversin., Yasunaga T., Mech Dev. January 1, 2011; 128 (7-10): 376-86.          


[MicroRNA control biosynthesis of motile cilia in vertebrates]., Chevalier B., Med Sci (Paris). January 1, 2011; 27 (6-7): 671-3.


Purinergic receptor-mediated Ca signaling in the olfactory bulb and the neurogenic area of the lateral ventricles., Hassenklöver T., Purinergic Signal. December 1, 2010; 6 (4): 429-45.                


Inversin relays Frizzled-8 signals to promote proximal pronephros development., Lienkamp S., Proc Natl Acad Sci U S A. November 23, 2010; 107 (47): 20388-93.                          


A highly conserved Poc1 protein characterized in embryos of the hydrozoan Clytia hemisphaerica: localization and functional studies., Fourrage C., PLoS One. November 16, 2010; 5 (11): e13994.              


Aberrant activation of fatty acid synthesis suppresses primary cilium formation and distorts tissue development., Willemarck N., Cancer Res. November 15, 2010; 70 (22): 9453-62.


Cep152 interacts with Plk4 and is required for centriole duplication., Hatch EM., J Cell Biol. November 15, 2010; 191 (4): 721-9.          


Facilitative glucose transporter Glut1 is actively excluded from rod outer segments., Gospe SM., J Cell Sci. November 1, 2010; 123 (Pt 21): 3639-44.      


Polycystin-2 activity is controlled by transcriptional coactivator with PDZ binding motif and PALS1-associated tight junction protein., Duning K., J Biol Chem. October 29, 2010; 285 (44): 33584-8.


Planar cell polarity acts through septins to control collective cell movement and ciliogenesis., Kim SK., Science. September 10, 2010; 329 (5997): 1337-40.


Imaging fluid flow and cilia beating pattern in Xenopus brain ventricles., Miskevich F., J Neurosci Methods. May 30, 2010; 189 (1): 1-4.


The nodal inhibitor Coco is a critical target of leftward flow in Xenopus., Schweickert A., Curr Biol. April 27, 2010; 20 (8): 738-43.      


The RNA-binding protein bicaudal C regulates polycystin 2 in the kidney by antagonizing miR-17 activity., Tran U., Development. April 1, 2010; 137 (7): 1107-16.              

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