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CELL-SPECIFIC EXPRESSION IN THE PITUITARY GLAND

CELL-SPECIFIC EXPRESSION IN THE PITUITARY GLAND
垂体中的细胞特异性表达
批准号:
6901006
负责人:
Sally A. Camper
金额:
$31.71万
依托单位国家:
美国
项目类别:
财政年份:
1999
资助国家:
美国
项目状态:
已结题
起止时间:
1999-07-15 至 2009-05-31

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中文摘要
翻译
描述(由申请人提供):脑下垂体包含五种不同的细胞类型,专门用于激素的产生。 了解细胞特化的机制很重要,因为许多身体功能都依赖于它。基因工程小鼠已经证明了几种转录因子和信号分子的作用,与人类垂体疾病的对应关系非常突出。我们证明了同源域转录因子PITX 2在垂体原基的发育和谱系特异性转录因子基因的激活中具有剂量依赖性作用。在人类中,PITX2突变是Rieger综合征和孤立的生长激素缺乏症的原因。我们建议在小鼠中通过细胞特异性缺失来测试PITX2在维持特化垂体细胞分化功能中的作用。将使用Gata 2的条件性无效等位基因来测试PITX 2下游靶点GATA 2的作用。FOXL2是一种叉头转录因子,是发育中的垂体中分化细胞的最早标志物之一,并且它激活促性腺激素释放激素受体转录。FOXL2单倍型不足的人有眼睛缺陷和卵巢早衰。我们认为FoxI2在调节发育过程中垂体前叶细胞的生长、成熟促性腺激素的功能以及垂体瘤的易感性方面具有重要作用。我们将通过表征Foxl2表达,将其置于已知转录因子的遗传层次结构中,并分析小鼠中可诱导的功能等位基因丧失的后果来探索这些想法。如果我们能在终末分化和激素基因转录激活之前找到特异性细胞的标记物,我们对垂体细胞特化的理解将会更进一步。为了产生这样的标记,我们建议使用转基因技术比较垂体细胞类型的转录组,以标记细胞进行纯化和基因阵列分析。每种分化细胞类型的独特转录本将通过生物信息学鉴定并通过实验验证。在拟议的资助周期,我们将使用完善的方法定义三个垂体转录因子的作用,并启动了一个新的方法来研究细胞的规格。我们期望这些研究将为了解人类垂体激素缺乏症的病因和垂体腺瘤的特征提供有价值的见解。
英文摘要
DESCRIPTION (provided by applicant): The pituitary gland contains five different cell types that are specialized in hormone production. Understanding the mechanism of cell specification is important because many body functions depend on it. Genetically engineered mice have proven the roles of several transcription factors and signaling molecules, and the correspondence with human pituitary disease is outstanding. We proved that the homeodomain transcription factor PITX2 has a dosage dependent role in development of the pituitary primordium and in activation of lineage specific transcription factor genes. In humans, PITX2 mutations are a cause of Rieger syndrome and isolated growth hormone deficiency. We propose to test the role of PITX2 in maintenance of differentiated functions of specialized pituitary cells by cell specific deletion in mice. The role of GATA2, a downstream target of PITX2, will be tested using a conditional null allele of Gata2. FOXL2 is a forkhead transcription factor that is one of the earliest markers of differentiated cells in the developing pituitary gland, and it activates gonadotropin releasing hormone receptor transcription. Humans haploinsufficient for FOXL2 have eye defects and premature ovarian failure. We propose that FoxI2 has roles in regulating the growth of committed anterior pituitary cells during development, in the function of mature gonadotropes, and in susceptibility to pituitary tumors. We will explore these ideas by characterizing Foxl2 expression, placing it in the genetic hierarchy of known transcription factors, and analyzing the consequences of an inducible loss of function allele in mice. Our understanding of pituitary cell specification would be advanced if we had markers to identify specialized cells prior to terminal differentiation and activation of hormone gene transcription. To generate such markers we propose to compare the transcriptomes of pituitary cell types using transgenic technology to mark cells for purification and gene array analysis. Transcripts unique to each differentiated cell type will be identified by bioinformatics and verified experimentally. During the proposed grant cycle we will have defined the roles of three pituitary transcription factors using well-established methods and initiated a new approach to studying cell specification. We expect that these studies will provide valuable insight for understanding the etiology of human pituitary hormone deficiency diseases and characterization of pituitary adenomas.
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