Opposing Pathways in Mammalian Sex Determination
Opposing Pathways in Mammalian Sex Determination
批准号:
7933170
负责人:
Blanche Capel
金额:
$15.61万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-09-30 至 2011-09-29
关键词:
AreaBiological AssayCell AdhesionCell Differentiation processCell PolarityCell modelCellsChondrogenesisDataDevelopmentDrosophila genusEpitheliumEquilibriumFamilyFemaleFundingGenesGerm CellsGoalsGonadal structureImageInvestigationLearningLifeLinkMammalsMolecularMorphogenesisMusMutant Strains MiceMutationOrganOrganogenesisOvarianOvaryPathway interactionsPatternPolycombPrimordiumProcessRepressionSignal PathwaySignal TransductionStem cellsStructureTestingTestisTissuesTubular formationWorkbasechromatin immunoprecipitationchromatin remodelingepithelial to mesenchymal transitiongene repressionmalememberpolycomb-M33precursor cellprogenitorsertoli cellsex determinationsry Genes
中文摘要
描述(由申请人提供):性腺形成为双能原基,可发育成睾丸或卵巢。随着它的发展,它揭示了细胞命运的显著可塑性和竞争建立雄性或雌性途径的精细平衡的信号机制。Y连锁基因Sry通过启动支持细胞的命运决定和睾丸索的形态组织来控制男性性别决定。在过去的十年中,已经了解了很多关于下游途径,调节睾丸形态发生。然而,人们对Sry如何启动这一过程知之甚少。现有数据表明,Sry的瞬时表达控制支持细胞前体中的细胞命运决定,这导致Sox 9在整个支持谱系中的稳定表达。与此同时,Sertoli前体开始聚集在生殖细胞周围,上皮化,并经历从头索形成的过程。我们的假设是,命运的决定步骤和支持前体细胞的间充质上皮转化是通过稳定的SOX 9表达的分子联系。对这一假设的调查将是我们在本资助期间工作的大方向,重点是四个主要领域。(1)基于我们以前的工作,我们将使用谱系追踪方法来研究支持前体如何产生和激活Sox9表达。(2)我们最近发现的分子证据竞争的拮抗途径在塞尔托利命运的决定。使用小鼠突变体,我们将调查如何相反的信号通路和转录网络的结果在男性途径的激活和女性途径的抑制。(3)我们计划使用染色质免疫沉淀试验和M33突变小鼠来确定多梳组染色质重塑蛋白M33如何参与卵巢或睾丸发育途径的建立。(4)我们将研究睾丸索如何形成,以及索的形成是否与支持细胞分化之间的相互作用通过SOX 9和MAP基因使用活成像,嵌合小鼠,细胞极性和细胞粘附的标志物,和小鼠携带突变的cMaf和Mafb,一个家庭的成员被证明是在果蝇性腺发育的关键,并在哺乳动物软骨形成过程中与SOX 9相互作用。
英文摘要
DESCRIPTION (provided by applicant): The gonad forms as a bipotential primordium that can develop into a testis or an ovary. As it develops it reveals the remarkable plasticity of cell fate and the finely balanced signaling mechanisms that compete to establish the male or female pathway. A Y-linked gene, Sry, controls male sex determination by initiating both Sertoli cell fate determination and the morphological organization of testis cords. In the past decade, much has been learned about downstream pathways that regulate testis morphogenesis. However, little is known about how Sry initiates this process. Available data suggests that transient expression of Sry controls a cell fate decision in Sertoli cell precursors that leads to the stable expression of Sox9 throughout the Sertoli lineage. Coincident with this process, Sertoli precursors begin to aggregate around germ cells, epithelialize, and undergo a process of de novo cord formation. Our hypothesis is that the fate determination step and the mesenchymal to epithelial transition of Sertoli precursor cells are molecularly linked through stabilized expression of SOX9. Investigation of this hypothesis will be the broad direction of our work during this funding period with emphasis on four main areas of focus. (1) Based on our previous work, we will use a lineage tracing approach to investigate how Sertoli precursors arise and activate Sox9 expression. (2) We have recently found molecular evidence for the competition of antagonistic pathways during Sertoli fate determination. Using mouse mutants, we will investigate how opposing signaling pathways and transcriptional networks result in the activation of the male pathway and the repression of the female pathway. (3) We plan to determine how the polycomb group chromatin remodeling protein, M33, is involved in the establishment of ovarian or testis developmental pathways using chromatin immunoprecipitation assays and M33 mutant mice. (4) We will investigate how testis cords form, and whether cord formation is linked to Sertoli cell differentiation through an interaction between SOX9 and MAP genes using live imaging, chimeric mice, markers of cell polarity and cell adhesion, and mice carrying mutations in cMaf and Mafb, members of a family shown to be critical for gonadogenesis in Drosophila, and known to interact with SOX9 during chondrogenesis in mammals.
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会议论文
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Regulation of Germ Cell Pluripotency Through The RNA-Binding Protein, DND1
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资助金额:$29.43万
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依托单位:
Opposing Pathways in Mammalian Sex Determination
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批准号:7863893
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资助金额:$1.04万
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财政年份:2009
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负责人:Blanche Capel
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依托单位:
Fourth Symposium Biology Vertebrate Sex Determination
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资助金额:$1.4万
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财政年份:2006
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负责人:Blanche Capel
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依托单位:
Training Program in Developmental & Stem Cell Biology
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批准号:9279509
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资助金额:$37.38万
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财政年份:2001
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依托单位:
Training Program in Developmental and Stem Cell Biology
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资助金额:$35.38万
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财政年份:2001
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依托单位:
ORGAN SPECIFIC MECHANISMS OF VASCULAR DEVELOPMENT
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批准号:6390426
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资助金额:$19.38万
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财政年份:1999
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Organ-specific Mechanisms of Vascular Development
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ORGAN SPECIFIC MECHANISMS OF VASCULAR DEVELOPMENT
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资助金额:$20.04万
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负责人:Blanche Capel
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依托单位:
ORGAN SPECIFIC MECHANISMS OF VASCULAR DEVELOPMENT
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资助金额:$18.75万
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负责人:Blanche Capel
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依托单位:
ORGAN SPECIFIC MECHANISMS OF VASCULAR DEVELOPMENT
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资助金额:$19.37万
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Organ-specific Mechanisms of Vascular Development
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依托单位:
海外基金