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Summary Expression Phenotypes Gene Literature (82) GO Terms (6) Nucleotides (48) Proteins (28) Interactants (213) Wiki
XB-GENEPAGE-960285

Papers associated with gnrh1



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Two mutations in extracellular loop 2 of the human GnRH receptor convert an antagonist to an agonist., Ott TR, Troskie BE, Roeske RW, Illing N, Flanagan CA, Millar RP., Mol Endocrinol. May 1, 2002; 16 (5): 1079-88.


Conformational constraint of mammalian, chicken, and salmon GnRHs, but not GnRH II, enhances binding at mammalian and nonmammalian receptors: evidence for preconfiguration of GnRH II., Pfleger KD, Bogerd J, Millar RP., Mol Endocrinol. September 1, 2002; 16 (9): 2155-62.


Differential distribution of melatonin receptors in the pituitary gland of Xenopus laevis., Wiechmann AF, Vrieze MJ, Wirsig-Wiechmann CR., Anat Embryol (Berl). March 1, 2003; 206 (4): 291-9.


Co-localization of mesotocin and opsin immunoreactivity in the hypothalamic preoptic nucleus of Xenopus laevis., Alvarez-Viejo M, Cernuda-Cernuda R, DeGrip WJ, Alvarez-López C, García-Fernández JM., Brain Res. April 18, 2003; 969 (1-2): 36-43.                


Functional conservation between members of an ancient duplicated transcription factor family, LSF/Grainyhead., Venkatesan K, McManus HR, Mello CC, Smith TF, Hansen U., Nucleic Acids Res. August 1, 2003; 31 (15): 4304-16.


Structure, expression, and cluster organization of genes encoding gonadotropin-releasing hormone receptors found in the neural complex of the ascidian Ciona intestinalis., Kusakabe T, Mishima S, Shimada I, Kitajima Y, Tsuda M., Gene. December 11, 2003; 322 77-84.


Signaling and antiproliferative effects of type I and II gonadotropin-releasing hormone receptors in breast cancer cells., Finch AR, Green L, Hislop JN, Kelly E, McArdle CA., J Clin Endocrinol Metab. April 1, 2004; 89 (4): 1823-32.


Regulation of gonadotropin-releasing hormone receptors by protein kinase C: inside out signalling and evidence for multiple active conformations., Caunt CJ, Hislop JN, Kelly E, Matharu AL, Green LD, Sedgley KR, Finch AR, McArdle CA., Endocrinology. August 1, 2004; 145 (8): 3594-602.


Arrestin-mediated ERK activation by gonadotropin-releasing hormone receptors: receptor-specific activation mechanisms and compartmentalization., Caunt CJ, Finch AR, Sedgley KR, Oakley L, Luttrell LM, McArdle CA., J Biol Chem. February 3, 2006; 281 (5): 2701-10.


Molecular and functional characterization of a novel gonadotropin-releasing-hormone receptor isolated from the common octopus (Octopus vulgaris)., Kanda A, Takahashi T, Satake H, Minakata H., Biochem J. April 1, 2006; 395 (1): 125-35.


Luteinizing hormone, follicle stimulating hormone, and gonadotropin releasing hormone mRNA expression of Xenopus laevis in response to endocrine disrupting compounds affecting reproductive biology., Urbatzka R, Lutz I, Opitz R, Kloas W., Gen Comp Endocrinol. April 1, 2006; 146 (2): 119-25.        


Grainyhead-like 3, a transcription factor identified in a microarray screen, promotes the specification of the superficial layer of the embryonic epidermis., Chalmers AD, Lachani K, Shin Y, Sherwood V, Cho KW, Papalopulu N., Mech Dev. September 1, 2006; 123 (9): 702-18.                                                  


Spatial and temporal expression of the Grainyhead-like transcription factor family during murine development., Auden A, Caddy J, Wilanowski T, Ting SB, Cunningham JM, Jane SM., Gene Expr Patterns. October 1, 2006; 6 (8): 964-70.          


Plasma membrane expression of GnRH receptors: regulation by antagonists in breast, prostate, and gonadotrope cell lines., Finch AR, Sedgley KR, Caunt CJ, McArdle CA., J Endocrinol. February 1, 2008; 196 (2): 353-67.                    


Endocannabinoids affect the reproductive functions in teleosts and amphibians., Cottone E, Guastalla A, Mackie K, Franzoni MF., Mol Cell Endocrinol. April 16, 2008; 286 (1-2 Suppl 1): S41-5.


Molecular identification and functional characterization of the kisspeptin/kisspeptin receptor system in lower vertebrates., Biran J, Ben-Dor S, Levavi-Sivan B., Biol Reprod. October 1, 2008; 79 (4): 776-86.


Differential regulation of gonadotropins (FSH and LH) and growth hormone (GH) by neuroendocrine, endocrine, and paracrine factors in the zebrafish--an in vitro approach., Lin SW, Ge W., Gen Comp Endocrinol. January 15, 2009; 160 (2): 183-93.


Cloning and expression of kiss2 in the zebrafish and medaka., Kitahashi T, Ogawa S, Parhar IS., Endocrinology. February 1, 2009; 150 (2): 821-31.


Nongenomic steroid-triggered oocyte maturation: of mice and frogs., Deng J, Carbajal L, Evaul K, Rasar M, Jamnongjit M, Hammes SR., Steroids. July 1, 2009; 74 (7): 595-601.


Agonist-induced internalization and downregulation of gonadotropin-releasing hormone receptors., Finch AR, Caunt CJ, Armstrong SP, McArdle CA., Am J Physiol Cell Physiol. September 1, 2009; 297 (3): C591-600.            


Plasma membrane expression of gonadotropin-releasing hormone receptors: regulation by peptide and nonpeptide antagonists., Finch AR, Caunt CJ, Armstrong SP, McArdle CA., Mol Endocrinol. February 1, 2010; 24 (2): 423-35.


Gene structure, transcripts and calciotropic effects of the PTH family of peptides in Xenopus and chicken., Pinheiro PL, Cardoso JC, Gomes AS, Fuentes J, Power DM, Canário AV., BMC Evol Biol. May 6, 2010; 10 373.            


The human gonadotropin releasing hormone type I receptor is a functional intracellular GPCR expressed on the nuclear membrane., Re M, Pampillo M, Savard M, Dubuc C, McArdle CA, Millar RP, Conn PM, Gobeil F, Bhattacharya M, Babwah AV., PLoS One. July 8, 2010; 5 (7): e11489.          


Aqueous leaf extracts display endocrine activities in vitro and disrupt sexual differentiation of male Xenopus laevis tadpoles in vivo., Hermelink B, Urbatzka R, Wiegand C, Pflugmacher S, Lutz I, Kloas W., Gen Comp Endocrinol. September 1, 2010; 168 (2): 245-55.


Ionotropic glutamate receptor AMPA 1 is associated with ovulation rate., Sugimoto M, Sasaki S, Watanabe T, Nishimura S, Ideta A, Yamazaki M, Matsuda K, Yuzaki M, Sakimura K, Aoyagi Y, Sugimoto Y., PLoS One. November 3, 2010; 5 (11): e13817.          


Expression of orexin receptors in the pituitary., Kaminski T, Smolinska N., Vitam Horm. January 1, 2012; 89 61-73.


A common environmental contaminant affects sexual behavior in the clawed frog, Xenopus tropicalis., Schwendiman AL, Propper CR., Physiol Behav. June 25, 2012; 106 (4): 520-6.


Physiological responses of Xenopus laevis tadpoles exposed to cyanobacterial biomass containing microcystin-LR., Ziková A, Lorenz C, Lutz I, Pflugmacher S, Kloas W., Aquat Toxicol. March 15, 2013; 128-129 25-33.


Steroid exposure during larval development of Xenopus laevis affects mRNA expression of the reproductive pituitary-gonadal axis in a sex- and stage-dependent manner., Urbatzka R, Lorenz C, Wiedemann C, Lutz I, Kloas W., Comp Biochem Physiol C Toxicol Pharmacol. March 1, 2014; 160 1-8.


The medio-basal hypothalamus as a dynamic and plastic reproduction-related kisspeptin-gnrh-pituitary center in fish., Zmora N, Stubblefield J, Golan M, Servili A, Levavi-Sivan B, Zohar Y., Endocrinology. May 1, 2014; 155 (5): 1874-86.


Shared evolutionary origin of vertebrate neural crest and cranial placodes., Horie R, Hazbun A, Chen K, Cao C, Levine M, Horie T., Nature. August 1, 2018; 560 (7717): 228-232.      


Metamorphic gene regulation programs in Xenopus tropicalis tadpole brain., Raj S, Sifuentes CJ, Kyono Y, Denver RJ., PLoS One. January 1, 2023; 18 (6): e0287858.                

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