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Ana Aranda
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Chemicals & Drugs
Living Beings
Anatomy
Physiology
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Network (preview)
13
Castillo, Ana Isabel
11
Cosgaya, Jose Miguel
11
Sánchez-Pacheco, Aurora
5
Jimenez-Lara, AM
4
Jiménez-Lara, Ana
4
Sánchez-Martínez, Ruth
4
Perez-Juste, German
3
Palacios, Daniela
3
Palomino, T
3
Tenbaum, Stephan
3
Tolon, RM
3
De los Santos, Maxy
3
Recio, Juan
2
Steinmeyer, Andreas
2
Martín-Pérez, Jorge
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All Publications
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2009: Sánchez-Pacheco Aurora; Martínez-Iglesias Olaia; Méndez-Pertuz Marinela; Aranda Ana
Residues K128, 132, and 134 in the thyroid hormone receptor-alpha are essential for receptor acetylation and activity.
Endocrinology 2009;150(11):5143-52.
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2009: Aranda Ana; Martínez-Iglesias Olaia; Ruiz-Llorente Lidia; García-Carpizo Verónica; Zambrano Alberto
Thyroid receptor: roles in cancer.
Trends in endocrinology and metabolism: TEM 2009;20(7):318-24.
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2009: González L; Zambrano A; Lazaro-Trueba I; Lopéz E; González J J A; Martín-Pérez J; Aranda A
Activation of the unliganded estrogen receptor by prolactin in breast cancer cells.
Oncogene 2009;28(10):1298-308.
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2009: Martínez-Iglesias Olaia; Garcia-Silva Susana; Tenbaum Stephan P; Regadera Javier; Larcher Fernando; Paramio Jesus M; Vennström Bjorn; Aranda Ana
Thyroid hormone receptor beta1 acts as a potent suppressor of tumor invasiveness and metastasis.
Cancer research 2009;69(2):501-9.
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2009: Martínez-Iglesias Olaia; García-Silva Susana; Regadera Javier; Aranda Ana
Hypothyroidism enhances tumor invasiveness and metastasis development.
PloS one 2009;4(7):e6428.
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2008: Chiloeches Antonio; Sánchez-Pacheco Aurora; Gil-Araujo Beatriz; Aranda Ana; Lasa Marina
Thyroid hormone-mediated activation of the ERK/dual specificity phosphatase 1 pathway augments the apoptosis of GH4C1 cells by down-regulating nuclear factor-kappaB activity.
Molecular endocrinology (Baltimore, Md.) 2008;22(11):2466-80.
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2008: Sánchez-Martínez Ruth; Zambrano Alberto; Castillo Ana I; Aranda Ana
Vitamin D-dependent recruitment of corepressors to vitamin D/retinoid X receptor heterodimers.
Molecular and cellular biology 2008;28(11):3817-29.
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2007: De los Santos Maxy; Martínez-Iglesias Olaia; Aranda Ana
Anti-estrogenic actions of histone deacetylase inhibitors in MCF-7 breast cancer cells.
Endocrine-related cancer 2007;14(4):1021-8.
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2007: De los Santos Maxy; Zambrano Alberto; Sánchez-Pacheco Aurora; Aranda Ana
Histone deacetylase inhibitors regulate retinoic acid receptor beta expression in neuroblastoma cells by both transcriptional and posttranscriptional mechanisms.
Molecular endocrinology (Baltimore, Md.) 2007;21(10):2416-26.
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2007: Nevado Julián; Tenbaum Stephan P; Castillo Ana Isabel; Sánchez-Pacheco Aurora; Aranda Ana
Activation of the human immunodeficiency virus type I long terminal repeat by 1 alpha,25-dihydroxyvitamin D3.
Journal of molecular endocrinology 2007;38(6):587-601.
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2007: De los Santos Maxy; Zambrano Alberto; Aranda Ana
Combined effects of retinoic acid and histone deacetylase inhibitors on human neuroblastoma SH-SY5Y cells.
Molecular cancer therapeutics 2007;6(4):1425-32.
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2006: Castillo Ana Isabel; Sánchez-Martínez Ruth; Jiménez-Lara Ana María; Steinmeyer Andreas; Zügel Ulrich; Aranda Ana
Characterization of vitamin D receptor ligands with cell-specific and dissociated activity.
Molecular endocrinology (Baltimore, Md.) 2006;20(12):3093-104.
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2006: Sánchez-Martínez Ruth; Castillo Ana I; Steinmeyer Andreas; Aranda Ana
The retinoid X receptor ligand restores defective signalling by the vitamin D receptor.
EMBO reports 2006;7(10):1030-4.
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2006: González Lorena; Agulló-Ortuño María Teresa; García-Martínez José Manuel; Calcabrini Annarica; Gamallo Carlos; Palacios José; Aranda Ana; Martín-Pérez Jorge
Role of c-Src in human MCF7 breast cancer cell tumorigenesis.
The Journal of biological chemistry 2006;281(30):20851-64.
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2005: Scsucova Sona; Palacios Daniela; Savignac Magali; Mellström Britt; Naranjo Jose Ramon; Aranda Ana
The repressor DREAM acts as a transcriptional activator on Vitamin D and retinoic acid response elements.
Nucleic acids research 2005;33(7):2269-79.
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2004: Cañón Estela; Cosgaya Jose Miguel; Scsucova Sona; Aranda Ana
Rapid effects of retinoic acid on CREB and ERK phosphorylation in neuronal cells.
Molecular biology of the cell 2004;15(12):5583-92.
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2004: García-Silva Susana; Aranda Ana
The thyroid hormone receptor is a suppressor of ras-mediated transcription, proliferation, and transformation.
Molecular and cellular biology 2004;24(17):7514-23.
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2004: Nevado Julián; Tenbaum Stephan P; Aranda Ana
hSrb7, an essential human Mediator component, acts as a coactivator for the thyroid hormone receptor.
Molecular and cellular endocrinology 2004;222(1-2):41-51.
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2004: Castillo Ana I; Sánchez-Martínez Ruth; Moreno Jose L; Martínez-Iglesias Olaia A; Palacios Daniela; Aranda Ana
A permissive retinoid X receptor/thyroid hormone receptor heterodimer allows stimulation of prolactin gene transcription by thyroid hormone and 9-cis-retinoic acid.
Molecular and cellular biology 2004;24(2):502-13.
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2003: Sánchez-Pacheco Aurora; Aranda Ana
Binding of the thyroid hormone receptor to a negative element in the basal growth hormone promoter is associated with histone acetylation.
The Journal of biological chemistry 2003;278(41):39383-91.
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2003: Méndez-Pertuz Marinela; Sánchez-Pacheco Aurora; Aranda Ana
The thyroid hormone receptor antagonizes CREB-mediated transcription.
The EMBO journal 2003;22(12):3102-12.
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2002: Garcia-Silva Susana; Perez-Juste German; Aranda Ana
Cell cycle control by the thyroid hormone in neuroblastoma cells.
Toxicology 2002;181-182():179-82.
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2001: Cosgaya J M; Aranda A
Nerve growth factor activates the RARbeta2 promoter by a Ras-dependent mechanism.
Journal of neurochemistry 2001;76(3):661-71.
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2000: Tolón R M; Castillo A I; Jiménez-Lara A M; Aranda A
Association with Ets-1 causes ligand- and AF2-independent activation of nuclear receptors.
Molecular and cellular biology 2000;20(23):8793-802.
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2000: López-Fernández J; Palacios D; Castillo A I; Tolon R M; Aranda A; Karin M
Differentiation of lactotrope precursor GHFT cells in response to fibroblast growth factor-2.
The Journal of biological chemistry 2000;275(28):21653-60.
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2000: Recio J A; Martínez de la Mata J; Martín-Nieto J; Aranda A
Retinoic acid stimulates HIV-1 transcription in human neuroblastoma SH-SY5Y cells.
FEBS letters 2000;469(1):118-22.
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2000: Pérez-Juste G; García-Silva S; Aranda A
An element in the region responsible for premature termination of transcription mediates repression of c-myc gene expression by thyroid hormone in neuroblastoma cells.
The Journal of biological chemistry 2000;275(2):1307-14.
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2000: Jimenez-Lara A M; Aranda A
Interaction of vitamin D and retinoid receptors on regulation of gene expression.
Hormone research 2000;54(5-6):301-5.
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1999: Perez-Juste G; Aranda A
Differentiation of neuroblastoma cells by phorbol esters and insulin-like growth factor 1 is associated with induction of retinoic acid receptor beta gene expression.
Oncogene 1999;18(39):5393-402.
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1999: Castillo A I; Jimenez-Lara A M; Tolon R M; Aranda A
Synergistic activation of the prolactin promoter by vitamin D receptor and GHF-1: role of the coactivators, CREB-binding protein and steroid hormone receptor coactivator-1 (SRC-1).
Molecular endocrinology (Baltimore, Md.) 1999;13(7):1141-54.
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1999: Jiménez-Lara A M; Aranda A
Vitamin D represses retinoic acid-dependent transactivation of the retinoic acid receptor-beta2 promoter: the AF-2 domain of the vitamin D receptor is required for transrepression.
Endocrinology 1999;140(6):2898-907.
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1999: Jimenez-Lara A M; Aranda A
The vitamin D receptor binds in a transcriptionally inactive form and without a defined polarity on a retinoic acid response element.
The FASEB journal : official publication of the Federation of American Societies for Experimental Biology 1999;13(9):1073-81.
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1999: Jiménez-Lara A M; Aranda A
Lysine 246 of the vitamin D receptor is crucial for ligand-dependent interaction with coactivators and transcriptional activity.
The Journal of biological chemistry 1999;274(19):13503-10.
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1999: Cosgaya J M; Aranda A
The ras oncogene inhibits growth factor inducibility of early response genes, and promotes selectively expression of NGFI-A in a PC12 cell line.
FEBS letters 1999;445(2-3):329-32.
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1999: Perez-Juste G; Aranda A
The cyclin-dependent kinase inhibitor p27(Kip1) is involved in thyroid hormone-mediated neuronal differentiation.
The Journal of biological chemistry 1999;274(8):5026-31.
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1998: Palomino T; Barettino D; Aranda A
Role of GHF-1 in the regulation of the rat growth hormone gene promoter by thyroid hormone and retinoic acid receptors.
The Journal of biological chemistry 1998;273(42):27541-7.
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1998: Tolón R M; Castillo A I; Aranda A
Activation of the prolactin gene by peroxisome proliferator-activated receptor-alpha appears to be DNA binding-independent.
The Journal of biological chemistry 1998;273(41):26652-61.
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1998: Palomino T; Sánchez-Pacheco A; Peña P; Aranda A
A direct protein-protein interaction is involved in the cooperation between thyroid hormone and retinoic acid receptors and the transcription factor GHF-1.
The FASEB journal : official publication of the Federation of American Societies for Experimental Biology 1998;12(12):1201-9.
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1998: Cosgaya J M; Aranda A; Cruces J; Martín-Blanco E
Neuronal differentiation of PC12 cells induced by engrailed homeodomain is DNA-binding specific and independent of MAP kinases.
Journal of cell science 1998;111 ( Pt 16)():2377-84.
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1998: Cosgaya J M; Pérez-Juste G; Aranda A
Retinoic acid regulates selectively the expression of immediate early response genes in PC12 cells.
FEBS letters 1998;429(3):254-8.
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1998: Castillo A I; Tolon R M; Aranda A
Insulin-like growth factor-1 stimulates rat prolactin gene expression by a Ras, ETS and phosphatidylinositol 3-kinase dependent mechanism.
Oncogene 1998;16(15):1981-91.
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1998: Sánchez-Pacheco A; Peña P; Palomino T; Güell A; Castrillo J L; Aranda A
The transcription factor GHF-1, but not the splice variant GHF-2, cooperates with thyroid hormone and retinoic acid receptors to stimulate rat growth hormone gene expression.
FEBS letters 1998;422(1):103-7.
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1997: Castillo A I; Aranda A
Differential regulation of pituitary-specific gene expression by insulin-like growth factor 1 in rat pituitary GH4C1 and GH3 cells.
Endocrinology 1997;138(12):5442-51.
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1997: Recio J A; Aranda A
Activation of the HIV-1 long terminal repeat by nerve growth factor.
The Journal of biological chemistry 1997;272(43):26807-10.
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1997: Garcia-Villalba P; Jimenez-Lara A M; Castillo A I; Aranda A
Histone acetylation influences thyroid hormone and retinoic acid-mediated gene expression.
DNA and cell biology 1997;16(4):421-31.
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1997: Cosgaya J M; Recio J A; Aranda A
Influence of Ras and retinoic acid on nerve growth factor induction of transin gene expression in PC12 cells.
Oncogene 1997;14(14):1687-96.
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1997: Cosgaya J M; Perez-Juste G; Castillo A I; Aranda A
Growth factor ligands of tyrosine kinase receptors activate the Rous sarcoma virus promoter by a Ras- and Raf-dependent mechanism.
Gene 1997;188(2):291-3.
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1997: Cosgaya J M; Perona R; Aranda A
Retinoic acid induces secretion of transforming growth factors by PC12 pheochromocytoma cells.
Oncogene 1997;14(5):579-87.
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1996: Cosgaya J M; Aranda A
Ras- and Raf-mediated regulation of transforming growth factor beta 1 gene expression by ligands of tyrosine kinase receptors in PC12 cells.
Oncogene 1996;12(12):2651-60.
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1996: Garcia-Villalba P; Jimenez-Lara A M; Aranda A
Vitamin D interferes with transactivation of the growth hormone gene by thyroid hormone and retinoic acid.
Molecular and cellular biology 1996;16(1):318-27.
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1996: Cosgaya J M; Garcia-Villalba P; Perona R; Aranda A
Comparison of the effects of retinoic acid and nerve growth factor on PC12 cell proliferation, differentiation, and gene expression.
Journal of neurochemistry 1996;66(1):89-98.
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1995: Cosgaya J M; Aranda A
Nerve growth factor regulates transforming growth factor-beta 1 gene expression by both transcriptional and posttranscriptional mechanisms in PC12 cells.
Journal of neurochemistry 1995;65(6):2484-90.
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1995: Sánchez-Pacheco A; Palomino T; Aranda A
Retinoic acid induces expression of the transcription factor GHF-1/Pit-1 in pituitary prolactin- and growth hormone-producing cell lines.
Endocrinology 1995;136(12):5391-8.
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1995: Sanchez-Pacheco A; Palomino T; Aranda A
Negative regulation of expression of the pituitary-specific transcription factor GHF-1/Pit-1 by thyroid hormones through interference with promoter enhancer elements.
Molecular and cellular biology 1995;15(11):6322-30.
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1994: Perez P; Palomino T; Schönthal A; Aranda A
Determination of the promoter elements that mediate repression of c-fos gene transcription by thyroid hormone and retinoic acid receptors.
Biochemical and biophysical research communications 1994;205(1):135-40.
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1993: Perez P; Schönthal A; Aranda A
Repression of c-fos gene expression by thyroid hormone and retinoic acid receptors.
The Journal of biological chemistry 1993;268(31):23538-43.
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1993: García-Villalba P; Au-Fliegner M; Samuels H H; Aranda A
Interaction of thyroid hormone and retinoic acid receptors on the regulation of the rat growth hormone gene promoter.
Biochemical and biophysical research communications 1993;191(2):580-6.
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1993: Sanchez-Pacheco A; Perez P; Villa A; Pascual A; Aranda A
Nicotinamide analogs and DNA-damaging agents deplete thyroid hormone receptor and c-erbA mRNA levels in pituitary GH1 cells.
Molecular and cellular endocrinology 1993;91(1-2):127-34.
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1992: Sánchez-Pacheco A; Aranda A
The thyroid hormone response element is required for activation of the growth hormone gene promoter by nicotinamide analogs.
FEBS letters 1992;312(1):42-6.
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1991: Bedo G; Santisteban P; Jolin T; Aranda A
Expression of the growth hormone gene and the pituitary-specific transcription factor GHF-1 in diabetic rats.
Molecular endocrinology (Baltimore, Md.) 1991;5(11):1730-9.
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1991: Pérez P; Sánchez-Pacheco A; Pascual A; Aranda A
Retinoic acid decreases thyroid hormone receptor expression in pituitary GH1 cells.
Biochemical and biophysical research communications 1991;181(1):9-15.
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1991: Aranda A; Copp R P; Pascual A; Samuels H H
Influence of thyroid hormone on ADP-ribosylation of nuclear proteins in cultured GH1 cells.
FEBS letters 1991;279(2):179-83.
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1990: Yusta B; Ortiz-Caro J; Bedo G; Pascual A; Aranda A
Regulation of thyroid hormone receptor and c-erbA mRNA levels by butyrate in neuroblastoma (N2A) and glioma (C6) cells.
Journal of neuroscience research 1990;27(1):1-9.
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1990: Aranda A; Toro M J; Usera F; Pascual A
Regulation by butyrate of the cAMP response to cholera toxin and forskolin in pituitary GH1 cells.
European journal of biochemistry / FEBS 1990;187(3):683-9.
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1989: Ortiz-Caro J; Yusta B; Pascual A; Aranda A
Organization of the thyroid hormone receptor in the chromatin of C6 glial cells: evidence that changes in receptor levels are not associated with changes in receptor distribution.
FEBS letters 1989;250(2):419-24.
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1989: Bedo G; Santisteban P; Aranda A
Retinoic acid regulates growth hormone gene expression.
Nature 1989;339(6221):231-4.
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1989: Montiel F; Ortiz-Caro J; Villa A; Pascual A; Aranda A
Presence of insulin receptors in cultured glial C6 cells. Regulation by butyrate.
The Biochemical journal 1989;258(1):147-55.
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1989: Hargreaves A J; Yusta B; Avila J; Hesketh J E; Aranda A; Pascual A
Sodium butyrate induces major morphological changes in C6 glioma cells that are correlated with increased synthesis of a spectrin-like protein.
Brain research. Developmental brain research 1989;45(2):291-5.
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1989: Montiel F; Aranda A; Pascual A
Effects of cyclic AMP elevation on the levels of insulin receptors in glial C6 cells.
Molecular and cellular endocrinology 1989;61(2):167-74.
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1988: Yusta B; Ortiz-Caro J; Pascual A; Aranda A
Comparison of the effects of forskolin and dibutyryl cyclic AMP in neuroblastoma cells: evidence that some of the actions of dibutyryl cyclic AMP are mediated by butyrate.
Journal of neurochemistry 1988;51(6):1808-18.
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1988: Ortiz-Caro J; Yusta B; Pascual A; Aranda A
Proliferation and differentiation are not directly related to H1(0) accumulation in cultured glial cells.
Brain research 1988;470(2):229-37.
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1988: Yusta B; Ortiz-Caro J; Pascual A; Aranda A
Mechanism of L-triiodothyronine (T3) uptake by glial C6 cells: regulation by butyrate.
Molecular and cellular endocrinology 1988;58(2-3):191-8.
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1988: Ortiz-Caro J; Montiel F; Yusta B; Pascual A; Aranda A
Short chain fatty acids modulate nuclear receptor and extranuclear L-triiodothyronine levels in glial C6 cells by different mechanisms.
Endocrinology 1988;122(6):2597-603.
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1988: Yusta B; Besnard F; Ortiz-Caro J; Pascual A; Aranda A; Sarliève L
Evidence for the presence of nuclear 3,5,3'-triiodothyronine receptors in secondary cultures of pure rat oligodendrocytes.
Endocrinology 1988;122(5):2278-84.
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1988: Hargreaves A; Yusta B; Aranda A; Avila J; Pascual A
Triiodothyronine (T3) induces neurite formation and increases synthesis of a protein related to MAP 1B in cultured cells of neuronal origin.
Brain research 1988;466(1):141-8.
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1988: Aranda A; Pascual A; Copp R; Samuels H
Cholera toxin affects nuclear ADP-ribosylation in GH1 cells.
Biochemical and biophysical research communications 1988;150(1):323-8.
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1987: Montiel F; Ortiz-Caro J; Villa A; Pascual A; Aranda A
Glucocorticoids regulate insulin binding in a rat glial cell line.
Endocrinology 1987;121(1):258-65.
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1987: Pascual A; Montiel F; Aranda A
Effects of iopanoic acid on thyroid hormone receptor, growth hormone production, and triiodothyronine generation from thyroxine in pituitary GH1 cells.
Endocrinology 1987;120(3):1089-96.
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1987: Ortiz-Caro J; Montiel F; Yusta B; Pascual A; Aranda A
Down-regulation of thyroid hormone nuclear receptor levels by L-triiodothyronine in cultured glial C6 cells.
Molecular and cellular endocrinology 1987;49(2-3):255-63.
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1986: Ortiz-Caro J; Yusta B; Montiel F; Villa A; Aranda A; Pascual A
Identification and characterization of L-triiodothyronine receptors in cells of glial and neuronal origin.
Endocrinology 1986;119(5):2163-7.
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1986: Montiel F; Aranda A; Villa A; Pascual A
Regulation of glycerol phosphate dehydrogenase and lactate dehydrogenase activity by forskolin and dibutyryl cyclic AMP in the C6 glial cells.
Journal of neurochemistry 1986;47(5):1336-43.
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1986: Ortiz-Caro J; Montiel F; Pascual A; Aranda A
Modulation of thyroid hormone nuclear receptors by short-chain fatty acids in glial C6 cells. Role of histone acetylation.
The Journal of biological chemistry 1986;261(30):13997-4004.
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1986: Pascual A; Aranda A; Ferret-Sena V; Gabellec M M; Rebel G; Sarliève L L
Triiodothyronine receptors in developing mouse neuronal and glial cell cultures and in chick-cultured neurones and astrocytes.
Developmental neuroscience 1986;8(2):89-101.
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