The vertebrate primary cilium is a sensory organelle.
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[1] C. Tabin,et al. Left–right development: Conserved function for embryonic nodal cilia , 2002, Nature.
[2] Y. Saijoh,et al. Determination of left–right patterning of the mouse embryo by artificial nodal flow , 2002, Nature.
[3] G. Pazour,et al. Polycystin-2 localizes to kidney cilia and the ciliary level is elevated in orpk mice with polycystic kidney disease , 2002, Current Biology.
[4] B. Dworniczak,et al. The Ion Channel Polycystin-2 Is Required for Left-Right Axis Determination in Mice , 2002, Current Biology.
[5] B. Hackett. Formation and malformation of the vertebrate left-right axis. , 2002, Current molecular medicine.
[6] M. Vail,et al. Over-expression of insulin-like growth factor binding protein-related protein-1(IGFBP-rP1/mac25) in the M12 prostate cancer cell line alters tumor growth by a delay in G1 and cyclin A associated apoptosis , 2002, Oncogene.
[7] K. R. Spring,et al. Bending the MDCK Cell Primary Cilium Increases Intracellular Calcium , 2001, The Journal of Membrane Biology.
[8] C. A. Poole,et al. The differential distribution of acetylated and detyrosinated alpha‐tubulin in the microtubular cytoskeleton and primary cilia of hyaline cartilage chondrocytes , 2001, Journal of anatomy.
[9] S. Somlo,et al. Human disease: Calcium signaling in polycystic kidney disease , 2001, Current Biology.
[10] N. Vaysse,et al. Antiproliferative Effect of Somatostatin and Analogs , 2001, Chemotherapy.
[11] G. Germino,et al. Co-assembly of polycystin-1 and -2 produces unique cation-permeable currents , 2000, Nature.
[12] D. Wheatley,et al. Length control of primary cilia: analysis of monociliate and multiciliate PtK1 cells , 2000, Biology of the cell.
[13] S. Reed,et al. Regulation of G(1) cyclin-dependent kinases in the mammalian cell cycle. , 2000, Current opinion in cell biology.
[14] G. Pazour,et al. Chlamydomonas IFT88 and Its Mouse Homologue, Polycystic Kidney Disease Gene Tg737, Are Required for Assembly of Cilia and Flagella , 2000, The Journal of cell biology.
[15] M. Hamon,et al. Localization of 5-HT6 receptors at the plasma membrane of neuronal cilia in the rat brain , 2000, Brain Research.
[16] H. Frierson,et al. Distribution of IGFBP-rP1 in Normal Human Tissues , 2000, The journal of histochemistry and cytochemistry : official journal of the Histochemistry Society.
[17] W. Richards,et al. The Oak Ridge Polycystic Kidney (orpk) disease gene is required for left-right axis determination. , 2000, Development.
[18] D. Supp,et al. Targeted deletion of the ATP binding domain of left-right dynein confirms its role in specifying development of left-right asymmetries. , 1999, Development.
[19] S. Somlo,et al. Identification and Characterization of Polycystin-2, the PKD2 Gene Product* , 1999, The Journal of Biological Chemistry.
[20] N. Hirokawa,et al. Abnormal nodal flow precedes situs inversus in iv and inv mice. , 1999, Molecular cell.
[21] N. Hirokawa,et al. Left-Right Asymmetry and Kinesin Superfamily Protein KIF3A: New Insights in Determination of Laterality and Mesoderm Induction by kif3A− /− Mice Analysis , 1999, The Journal of cell biology.
[22] L. Goldstein,et al. Situs inversus and embryonic ciliary morphogenesis defects in mouse mutants lacking the KIF3A subunit of kinesin-II. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[23] S. Schulz,et al. Selective targeting of somatostatin receptor 3 to neuronal cilia , 1999, Neuroscience.
[24] N. Hirokawa,et al. Randomization of Left–Right Asymmetry due to Loss of Nodal Cilia Generating Leftward Flow of Extraembryonic Fluid in Mice Lacking KIF3B Motor Protein , 1998, Cell.
[25] G. Germino,et al. PKD1 interacts with PKD2 through a probable coiled-coil domain , 1997, Nature Genetics.
[26] W. Richards,et al. Isolation and characterization of liver epithelial cell lines from wild-type and mutant TgN737Rpw mice. , 1997, The American journal of pathology.
[27] Patricia A. Gabow,et al. PKD2, a Gene for Polycystic Kidney Disease That Encodes an Integral Membrane Protein , 1996, Science.
[28] D N Wheatley,et al. EXPRESSION OF PRIMARY CILIA IN MAMMALIAN CELLS , 1996, Cell biology international.
[29] J. Hughes,et al. The polycystic kidney disease 1 (PKD1) gene encodes a novel protein with multiple cell recognition domains , 1995, Nature Genetics.
[30] R. Sager,et al. Enhanced expression of an insulin growth factor-like binding protein (mac25) in senescent human mammary epithelial cells and induced expression with retinoic acid. , 1995, Proceedings of the National Academy of Sciences of the United States of America.
[31] P. Bork,et al. Polycystic kidney disease: The complete structure of the PKD1 gene and its protein , 1995, Cell.
[32] W E Sweeney,et al. Candidate gene associated with a mutation causing recessive polycystic kidney disease in mice. , 1994, Science.
[33] K. Kozminski,et al. A motility in the eukaryotic flagellum unrelated to flagellar beating. , 1993, Proceedings of the National Academy of Sciences of the United States of America.
[34] C. Rieder,et al. Flexible-substratum technique for viewing cells from the side: some in vivo properties of primary (9+0) cilia in cultured kidney epithelia. , 1988, Journal of cell science.
[35] J. N. Thomson,et al. Mutant sensory cilia in the nematode Caenorhabditis elegans. , 1986, Developmental biology.
[36] G. Piperno,et al. Monoclonal antibodies specific for an acetylated form of alpha-tubulin recognize the antigen in cilia and flagella from a variety of organisms , 1985, The Journal of cell biology.
[37] C. Rieder,et al. The resorption of primary cilia during mitosis in a vertebrate (PtK1) cell line. , 1979, Journal of ultrastructure research.
[38] A. Pardee,et al. Centriole ciliation is related to quiescence and DNA synthesis in 3T3 cells , 1979, Cell.
[39] K. Porter,et al. A scanning electron microscopic study of the nephron. , 1974, The American journal of anatomy.
[40] S. Sorokin,et al. CENTRIOLES AND THE FORMATION OF RUDIMENTARY CILIA BY FIBROBLASTS AND SMOOTH MUSCLE CELLS , 1962, The Journal of cell biology.
[41] B. G. Barnes. Ciliated secretory cells in the pars distalis of the mouse hypophysis. , 1961, Journal of ultrastructure research.
[42] B. Munger. A light and electron microscopic study of cellular differentiation in the pancreatic islets of the mouse. , 1958, The American journal of anatomy.
[43] K. W. Zimmermann,et al. Beiträge zur Kenntniss einiger Drüsen und Epithelien , 1898 .
[44] S. Gardiner,et al. Rudimentary cilia in muscle cells of annelids and echinoderms , 2004, Cell and Tissue Research.
[45] E. A. Schwartz,et al. Analysis and modeling of the primary cilium bending response to fluid shear. , 1997, The American journal of physiology.
[46] D. Wheatley. Primary cilia in normal and pathological tissues. , 1995, Pathobiology : journal of immunopathology, molecular and cellular biology.
[47] L. Luciano,et al. Flagellar cells and ciliary cells in the renal tubule of elasmobranchs. , 1989, The Journal of experimental zoology. Supplement : published under auspices of the American Society of Zoologists and the Division of Comparative Physiology and Biochemistry.
[48] C A Poole,et al. Analysis of the morphology and function of primary cilia in connective tissues: a cellular cybernetic probe? , 1985, Cell motility.