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Summary Expression Phenotypes Gene Literature (20) GO Terms (39) Nucleotides (71) Proteins (39) Interactants (225) Wiki
XB-GENEPAGE-484465

Papers associated with fgf9



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FGF20., Van Greenen JD, Hockman D., Differentiation. November 7, 2023; 100737.


Secreted inhibitors drive the loss of regeneration competence in Xenopus limbs., Aztekin C, Hiscock TW, Gurdon J, Jullien J, Marioni J, Simons BD., Development. June 1, 2021; 148 (11):                                             


Characterization of axolotl lampbrush chromosomes by fluorescence in situ hybridization and immunostaining., Keinath MC, Davidian A, Timoshevskiy V, Timoshevskaya N, Gall JG., Exp Cell Res. April 15, 2021; 401 (2): 112523.            


Xenopus laevis FGF16 activates the expression of genes coding for the transcription factors Sp5 and Sp5l., Elsy M, Rowbotham A, Lord H, Isaacs HV, Pownall ME., Int J Dev Biol. January 1, 2019; 63 (11-12): 631-639.            


Transcriptome analysis identifies genes involved in sex determination and development of Xenopus laevis gonads., Piprek RP, Damulewicz M, Kloc M, Kubiak JZ., Differentiation. January 1, 2018; 100 46-56.                          


A Molecular atlas of Xenopus respiratory system development., Rankin SA, Rankin SA, Thi Tran H, Wlizla M, Mancini P, Shifley ET, Bloor SD, Han L, Vleminckx K, Vleminckx K, Wert SE, Zorn AM., Dev Dyn. January 1, 2015; 244 (1): 69-85.                    


Distinct patterns of compartmentalization and proteolytic stability of PDE6C mutants linked to achromatopsia., Cheguru P, Majumder A, Artemyev NO., Mol Cell Neurosci. January 1, 2015; 64 1-8.


FGF signaling is required for lens regeneration in Xenopus laevis., Fukui L, Henry JJ., Biol Bull. August 1, 2011; 221 (1): 137-45.


Temporal and spatial expression of FGF ligands and receptors during Xenopus development., Lea R, Papalopulu N, Amaya E, Dorey K., Dev Dyn. June 1, 2009; 238 (6): 1467-79.                                                                                                        


Requirement for Wnt and FGF signaling in Xenopus tadpole tail regeneration., Lin G, Slack JM., Dev Biol. April 15, 2008; 316 (2): 323-35.              


Rethinking the proximodistal axis of the vertebrate limb in the molecular era., Tabin C, Wolpert L., Genes Dev. June 15, 2007; 21 (12): 1433-42.


Formation of the ascidian epidermal sensory neurons: insights into the origin of the chordate peripheral nervous system., Pasini A, Amiel A, Rothbächer U, Roure A, Lemaire P, Darras S., PLoS Biol. July 1, 2006; 4 (7): e225.              


Comparative genomics on FGF20 orthologs., Katoh M., Oncol Rep. July 1, 2005; 14 (1): 287-90.


Temporal regulation of global gene expression and cellular morphology in Xenopus kidney cells in response to clinorotation., Kitamoto J, Fukui A, Asashima M., Adv Space Res. January 1, 2005; 35 (9): 1654-61.


Molecular cloning and characterization of human FGF-20 on chromosome 8p21.3-p22., Kirikoshi H, Sagara N, Saitoh T, Tanaka K, Sekihara H, Shiokawa K, Katoh M., Biochem Biophys Res Commun. August 2, 2000; 274 (2): 337-43.


Fibroblast growth factor treatment produces differential effects on survival and neurite outgrowth from identified bulbospinal neurons in vitro., Pataky DM, Borisoff JF, Fernandes KJ, Tetzlaff W, Steeves JD., Exp Neurol. June 1, 2000; 163 (2): 357-72.


Characterization of a novel member of the FGF family, XFGF-20, in Xenopus laevis., Koga C, Adati N, Nakata K, Mikoshiba K, Furuhata Y, Sato S, Tei H, Sakaki Y, Kurokawa T, Shiokawa K, Yokoyama KK., Biochem Biophys Res Commun. August 11, 1999; 261 (3): 756-65.                  


FGF-8 is associated with anteroposterior patterning and limb regeneration in Xenopus., Christen B, Slack JM., Dev Biol. December 15, 1997; 192 (2): 455-66.        


XFGF-9: a new fibroblast growth factor from Xenopus embryos., Song J, Slack JM., Dev Dyn. August 1, 1996; 206 (4): 427-36.


The role of fibroblast growth factors in early Xenopus development., Slack JM, Isaacs HV, Song J, Durbin L, Pownall ME., Biochem Soc Symp. January 1, 1996; 62 1-12.

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