Role of estrogen receptor alpha in uterine epithelial-stromal interactions
Role of estrogen receptor alpha in uterine epithelial-stromal interactions
批准号:
8622699
负责人:
MILAN K BAGCHI
金额:
$23.79万
依托单位国家:
美国
项目类别:
财政年份:
2014
资助国家:
美国
项目状态:
已结题
起止时间:
2014-04-19 至 2016-03-31
关键词:
5&apos Flanking RegionAdultBiologicalBiologyCell ProliferationCellsDNADevelopmentEmbryoEndometrialEndometrial Stromal CellEndometriumEpithelialEpithelial CellsEpithelial-Stromal CommunicationEpitheliumEstrogen Receptor alphaEstrogen ReceptorsEstrogensEventExcisionFemaleFertilityFunctional disorderGenerationsGenesGerm LinesGrowthHealthHormone ReceptorHormonesInfertilityKnock-outKnockout MiceLaboratoriesLinkMediatingMethodologyModelingMolecularMusNeonatalNucleic Acid Regulatory SequencesOvarian Steroid HormonePathway interactionsPatternPregnancyProcessProgesteroneProgesterone ReceptorsRegulatory ElementResearch PersonnelRoleSeriesSignal TransductionSteroid ReceptorsSteroidsStromal CellsTestingTissue RecombinationTissuesTransgenic MiceUterusValidationbasecell typeimplantationinsightmouse genomemouse modelmutant mouse modelnatural Blastocyst Implantationnovelparacrinepreimplantationpromoterreceptorrecombinasereproductiveresponsetooltranscription factortransmission process
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): Concerted actions of the ovarian steroid hormones estrogen (E) and progesterone (P), acting via their cognate receptors in uterine epithelial and stromal compartments, determine the maternal competency for embryo implantation. A clear understanding of the molecular pathways via which these hormone receptors regulate uterine functions during the reproductive cycle and pregnancy would require a definition of their cell type-specific roles in the uterus. Until recently, it was thought that estrogen receptor alpha (ERα present in the epithelial cells drives the E-induced proliferation of these cells during the reproductive cycle. Generation of a conditional knockout of ERα in uterine epithelium has revealed the surprising fact that E-induced proliferation of uterine epithelial cells is independen of the epithelial ERα. This finding has led to the hypothesis that E may act via the stromal ERα to control uterine epithelial proliferation by paracrine mechanisms. To test this new paradigm, it is necessary to create a conditional knockout mouse model in which ERα is deleted specifically in the uterine stromal cells. A major objective of this R21 application is to develop the Hand2-Cre transgenic mice in which Cre recombinase expression, under the control of an 11-kb regulatory region of the Hand2 gene, will be induced exclusively in the uterine stromal cells in response to P, thereby ablating the "floxed" ERα gene in these cells. This mouse model will provide novel insights into the role of ERα in directing stromal-epithelial dialogue during the establishment of pregnancy and would serve as an extremely valuable tool for researchers in the field of uterine biology.
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会议论文
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