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PUBMED FOR HANDHELDS

Journal Abstract Search


277 related items for PubMed ID: 15117876

  • 1. Liver receptor homolog-1 stimulates the progesterone biosynthetic pathway during follicle-stimulating hormone-induced granulosa cell differentiation.
    Saxena D, Safi R, Little-Ihrig L, Zeleznik AJ.
    Endocrinology; 2004 Aug; 145(8):3821-9. PubMed ID: 15117876
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  • 3. Adenovirus-directed expression of functional luteinizing hormone (LH) receptors in undifferentiated rat granulosa cells: evidence for differential signaling through follicle-stimulating hormone and LH receptors.
    Bebia Z, Somers JP, Liu G, Ihrig L, Shenker A, Zeleznik AJ.
    Endocrinology; 2001 Jun; 142(6):2252-9. PubMed ID: 11356670
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  • 5. Activation of the p38 MAPK pathway by follicle-stimulating hormone regulates steroidogenesis in granulosa cells differentially.
    Yu FQ, Han CS, Yang W, Jin X, Hu ZY, Liu YX.
    J Endocrinol; 2005 Jul; 186(1):85-96. PubMed ID: 16002539
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  • 6. Follicle-stimulating hormone increases concentrations of messenger ribonucleic acid encoding cytochrome P450 cholesterol side-chain cleavage enzyme in primary cultures of porcine granulosa cells.
    Urban RJ, Garmey JC, Shupnik MA, Veldhuis JD.
    Endocrinology; 1991 Apr; 128(4):2000-7. PubMed ID: 1848508
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  • 7. A novel antagonistic effect of the bone morphogenetic protein system on prolactin actions in regulating steroidogenesis by granulosa cells.
    Nakamura E, Otsuka F, Inagaki K, Miyoshi T, Yamanaka R, Tsukamoto N, Suzuki J, Ogura T, Makino H.
    Endocrinology; 2010 Nov; 151(11):5506-18. PubMed ID: 20810564
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  • 8. Constitutively active protein kinase A qualitatively mimics the effects of follicle-stimulating hormone on granulosa cell differentiation.
    Escamilla-Hernandez R, Little-Ihrig L, Orwig KE, Yue J, Chandran U, Zeleznik AJ.
    Mol Endocrinol; 2008 Aug; 22(8):1842-52. PubMed ID: 18535249
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  • 11. Inhibition of rat granulosa cell differentiation by overexpression of Galphaq.
    Escamilla-Hernandez R, Little-Ihrig L, Zeleznik AJ.
    Endocrine; 2008 Feb; 33(1):21-31. PubMed ID: 18401763
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  • 12. Mutual regulation of growth hormone and bone morphogenetic protein system in steroidogenesis by rat granulosa cells.
    Nakamura E, Otsuka F, Inagaki K, Miyoshi T, Matsumoto Y, Ogura K, Tsukamoto N, Takeda M, Makino H.
    Endocrinology; 2012 Jan; 153(1):469-80. PubMed ID: 22067323
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  • 13. A role for increased lutropin/choriogonadotropin receptor (LHR) gene transcription in the follitropin-stimulated induction of the LHR in granulosa cells.
    Shi H, Segaloff DL.
    Mol Endocrinol; 1995 Jun; 9(6):734-44. PubMed ID: 8592519
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  • 14. Mechanisms of insulin-like growth factor I augmentation of follicle-stimulating hormone-induced porcine steroidogenic acute regulatory protein gene promoter activity in granulosa cells.
    LaVoie HA, Garmey JC, Veldhuis JD.
    Endocrinology; 1999 Jan; 140(1):146-53. PubMed ID: 9886819
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  • 15. The orphan nuclear receptor, liver receptor homolog-1, regulates cholesterol side-chain cleavage cytochrome p450 enzyme in human granulosa cells.
    Kim JW, Havelock JC, Carr BR, Attia GR.
    J Clin Endocrinol Metab; 2005 Mar; 90(3):1678-85. PubMed ID: 15613430
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  • 18. Inhibitory effects of superoxide dismutase and cyclic guanosine 3',5'-monophosphate on estrogen production in cultured rat granulosa cells.
    LaPolt PS, Hong LS.
    Endocrinology; 1995 Dec; 136(12):5533-9. PubMed ID: 7588305
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  • 19. The role of thyroid hormone as a biological amplifier of the actions of follicle-stimulating hormone in the functional differentiation of cultured porcine granulosa cells.
    Maruo T, Hayashi M, Matsuo H, Yamamoto T, Okada H, Mochizuki M.
    Endocrinology; 1987 Oct; 121(4):1233-41. PubMed ID: 3115761
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