Cellular distribution of Egr1 transcription in the male rat pituitary gland.
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[1] C. Magnan,et al. Unsaturated fatty acids disrupt Smad signaling in gonadotrope cells leading to inhibition of FSHβ gene expression. , 2014, Endocrinology.
[2] M. Dattani,et al. Sox2(+) stem/progenitor cells in the adult mouse pituitary support organ homeostasis and have tumor-inducing potential. , 2013, Cell stem cell.
[3] P. Mellon,et al. Kisspeptin regulates gonadotropin genes via immediate early gene induction in pituitary gonadotropes. , 2013, Molecular endocrinology.
[4] D. Hodson,et al. Anterior pituitary cell networks , 2012, Frontiers in Neuroendocrinology.
[5] P. Mellon,et al. Stress levels of glucocorticoids inhibit LHβ-subunit gene expression in gonadotrope cells. , 2012, Molecular endocrinology.
[6] F. Wondisford,et al. CREB Binding Protein (CBP) Activation Is Required for Luteinizing Hormone Beta Expression and Normal Fertility in Mice , 2012, Molecular and Cellular Biology.
[7] U. Renner,et al. Cellular and molecular specificity of pituitary gland physiology. , 2012, Physiological reviews.
[8] T. Wells,et al. Molecular Neuroscience Original Research Article Transcription Mapping of Embryonic Rat Brain Reveals Egr-1 Induction in Sox2 + Neural Progenitor Cells , 2022 .
[9] C. Kahn,et al. Rescue of obesity-induced infertility in female mice due to a pituitary-specific knockout of the insulin receptor. , 2010, Cell metabolism.
[10] A. Navratil,et al. GnRH signaling, the gonadotrope and endocrine control of fertility , 2010, Frontiers in Neuroendocrinology.
[11] P. Mellon,et al. Hormones in synergy: Regulation of the pituitary gonadotropin genes , 2010, Molecular and Cellular Endocrinology.
[12] U. Boehm,et al. Functional characterization of genetically labeled gonadotropes. , 2008, Endocrinology.
[13] S. Asa,et al. Pituitary-specific knockout of the Carney complex gene Prkar1a leads to pituitary tumorigenesis. , 2008, Molecular endocrinology.
[14] J. Holter,et al. Transgenic delivery and detection of GFP in neuropeptide neurons , 2008 .
[15] T. Wells,et al. Egr-1-d2EGFP transgenic rats identify transient populations of neurons and glial cells during postnatal brain development. , 2007, Gene expression patterns : GEP.
[16] T. Hara,et al. Generation of transgenic rats expressing green fluorescent protein in S-100beta-producing pituitary folliculo-stellate cells and brain astrocytes. , 2007, Endocrinology.
[17] Jennifer D. Whitesell,et al. Neuroendocrine plasticity in the anterior pituitary: gonadotropin-releasing hormone-mediated movement in vitro and in vivo. , 2007, Endocrinology.
[18] D. Carter. Cellular transcriptomics – the next phase of endocrine expression profiling , 2006, Trends in Endocrinology & Metabolism.
[19] F. Wondisford,et al. Insulin augments GnRH-stimulated LHβ gene expression by Egr-1 , 2006, Molecular and Cellular Endocrinology.
[20] D. Carter,et al. Oestrogenic regulation of an egr-1 transgene in rat anterior pituitary. , 2003, Journal of molecular endocrinology.
[21] S. Safe,et al. Estrogen Receptor-mediated Activation of the Serum Response Element in MCF-7 Cells through MAPK-dependent Phosphorylation of Elk-1* , 2001, The Journal of Biological Chemistry.
[22] D. Carter,et al. The nuclear, 75 kDa form of early growth response protein-1/nerve growth factor-induced A protein is primarily restricted to LH beta-subunit-expressing cells in rat anterior pituitary. , 2000, European journal of endocrinology.
[23] J. Milbrandt,et al. Functional Compensation by Egr4 inEgr1-Dependent Luteinizing Hormone Regulation and Leydig Cell Steroidogenesis , 2000, Molecular and Cellular Biology.
[24] Carter,et al. Cyclical Expression of Egr‐1/NGFI‐A in the Rat Anterior Pituitary: A Molecular Signal for Ovulation? , 2000, Journal of neuroendocrinology.
[25] M. Wolfe,et al. Early growth response protein 1 binds to the luteinizing hormone-beta promoter and mediates gonadotropin-releasing hormone-stimulated gene expression. , 1999, Molecular endocrinology.
[26] J. Drouin,et al. Egr-1 Is a Downstream Effector of GnRH and Synergizes by Direct Interaction with Ptx1 and SF-1 To Enhance Luteinizing Hormone β Gene Transcription , 1999, Molecular and Cellular Biology.
[27] S. Schneider-Maunoury,et al. Multiple pituitary and ovarian defects in Krox-24 (NGFI-A, Egr-1)-targeted mice. , 1998, Molecular endocrinology.
[28] D. Grube,et al. Heterogeneity of pituitary gonadotrope cells in male rats. , 1997, Archives of histology and cytology.
[29] G. Childs,et al. Differential Expression of c-fos In Vitro by All Anterior Pituitary Cell Types During the Estrous Cycle: Enhanced Expression by Luteinizing Hormone but Not by Follicle-stimulating Hormone Cells , 1997, The journal of histochemistry and cytochemistry : official journal of the Histochemistry Society.
[30] J. Milbrandt,et al. Luteinizing Hormone Deficiency and Female Infertility in Mice Lacking the Transcription Factor NGFI-A (Egr-1) , 1996, Science.
[31] P. Kopp,et al. Sexually dimorphic transcriptional responses to gonadotropin-releasing hormone require chronic in vivo exposure to estradiol. , 1996, Endocrinology.
[32] G. Unabia,et al. Recruitment and maturation of small subsets of luteinizing hormone gonadotropes during the estrous cycle. , 1992, Endocrinology.
[33] K. Catt,et al. Heterogeneous luteinizing hormone and follicle-stimulating hormone storage patterns in subtypes of gonadotropes separated by centrifugal elutriation. , 1983, Endocrinology.