The differential effects of the gonadotropin receptors on aromatase expression in primary cultures of immature rat granulosa cells are highly dependent on the density of receptors expressed and the activation of the inositol phosphate cascade.
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Emerging roles for the FSH receptor adapter protein APPL1 and overlap of a putative 14-3-3τ interaction domain with a canonical G-protein interaction siteThe Reproductive Toxicity of CdSe/ZnS Quantum Dots on the in vivo Ovarian Function and in vitro FertilizationGq/11-Dependent Changes in the Murine Ovarian Transcriptome at the End of Gestation.The Leydig cell MEK/ERK pathway is critical for maintaining a functional population of adult Leydig cells and for fertilitySignaling through FSH receptors on human umbilical vein endothelial cells promotes angiogenesis.Transactivation of the epidermal growth factor receptor is involved in the lutropin receptor-mediated down-regulation of ovarian aromatase expression in vivo.LH and hCG action on the same receptor results in quantitatively and qualitatively different intracellular signalling.The adapter protein APPL1 links FSH receptor to inositol 1,4,5-trisphosphate production and is implicated in intracellular Ca(2+) mobilizationDecreased degradation of internalized follicle-stimulating hormone caused by mutation of aspartic acid 6.30(550) in a protein kinase-CK2 consensus sequence in the third intracellular loop of human follicle-stimulating hormone receptor.Activation of Gq/11 in the mouse corpus luteum is required for parturition.A delayed gonadotropin-dependent and growth factor-mediated activation of the extracellular signal-regulated kinase 1/2 cascade negatively regulates aromatase expression in granulosa cells.Lutropin/choriogonadotropin stimulate the proliferation of primary cultures of rat Leydig cells through a pathway that involves activation of the extracellularly regulated kinase 1/2 cascade.Molecular mechanisms of the physiological functions of the aryl hydrocarbon (dioxin) receptor, a multifunctional regulator that senses and responds to environmental stimuliMutations of the lutropin/choriogonadotropin receptor that do not activate the phosphoinositide cascade allow hCG to induce aromatase expression in immature rat granulosa cellsAromatase expression in the ovary: hormonal and molecular regulation.The luteinizing hormone receptor-activated extracellularly regulated kinase-1/2 cascade stimulates epiregulin release from granulosa cellsOvulation involves the luteinizing hormone-dependent activation of G(q/11) in granulosa cells.The role of the aryl hydrocarbon receptor in the female reproductive systemHeterodimerization between the lutropin and follitropin receptors is associated with an attenuation of hormone-dependent signaling.Activation of the lutropin/choriogonadotropin receptor inhibits apoptosis of immature Leydig cells in primary culture.Chorionic gonadotropin regulates prostaglandin E synthase via a phosphatidylinositol 3-kinase-extracellular regulatory kinase pathway in a human endometrial epithelial cell line: implications for endometrial responses for embryo implantation.Revisiting the expression and function of follicle-stimulation hormone receptor in human umbilical vein endothelial cells.The Follitropin Receptor: Matching Structure and Function.The ERK1/2 pathway regulates testosterone synthesis by coordinately regulating the expression of steroidogenic genes in Leydig cells.Differential Regulation of Human and Mouse Myometrial Contractile Activity by FSH as a Function of FSH Receptor Density.Temporal reprogramming of calcium signalling via crosstalk of gonadotrophin receptors that associate as functionally asymmetric heteromers.Transcriptomic analysis of gene cascades involved in protein kinase A and C signaling in the KGN line of human ovarian granulosa tumor cells†.
P2860
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P2860
The differential effects of the gonadotropin receptors on aromatase expression in primary cultures of immature rat granulosa cells are highly dependent on the density of receptors expressed and the activation of the inositol phosphate cascade.
description
2005 nî lūn-bûn
@nan
2005 թուականի Մայիսին հրատարակուած գիտական յօդուած
@hyw
2005 թվականի մայիսին հրատարակված գիտական հոդված
@hy
2005年の論文
@ja
2005年論文
@yue
2005年論文
@zh-hant
2005年論文
@zh-hk
2005年論文
@zh-mo
2005年論文
@zh-tw
2005年论文
@wuu
name
The differential effects of th ...... he inositol phosphate cascade.
@ast
The differential effects of th ...... he inositol phosphate cascade.
@en
The differential effects of th ...... he inositol phosphate cascade.
@nl
type
label
The differential effects of th ...... he inositol phosphate cascade.
@ast
The differential effects of th ...... he inositol phosphate cascade.
@en
The differential effects of th ...... he inositol phosphate cascade.
@nl
prefLabel
The differential effects of th ...... he inositol phosphate cascade.
@ast
The differential effects of th ...... he inositol phosphate cascade.
@en
The differential effects of th ...... he inositol phosphate cascade.
@nl
P2860
P356
P1433
P1476
The differential effects of th ...... he inositol phosphate cascade.
@en
P2093
Francesc Xavier Donadeu
Mario Ascoli
P2860
P304
P356
10.1210/EN.2005-0403
P407
P577
2005-05-26T00:00:00Z