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Cell-fate of gastrointestinal endocrine cells

Cell-fate of gastrointestinal endocrine cells
胃肠道内分泌细胞的细胞命运
批准号:
6873017
负责人:
ANDREW B. LEITER
金额:
$38.31万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2004
资助国家:
美国
项目状态:
已结题
起止时间:
2004-05-01 至 2009-04-30

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中文摘要
翻译
描述(由申请人提供):胃肠道内分泌细胞的分化取决于碱性螺旋环螺旋(bHLH)转录因子的表达和功能。 Notch信号通过抑制bHLH蛋白的功能,限制了能够在肠、胃和胰腺中采用内分泌细胞命运的细胞数量。 这项研究的总体目标是确定内分泌祖细胞在什么分化阶段可以恢复到非内分泌细胞的命运,确定发育中的祖细胞何时对notch信号的抑制作用保持敏感,并确定在肠内分泌细胞分化的不同阶段激活的基因。 计划有三个具体目标。 第一个目标将在转基因小鼠中使用基于Cre/Iox的方法来检查表达bHLH蛋白的胃肠道内分泌前体细胞的细胞命运。 第二个目标将确定当GI内分泌祖细胞受notch及其相关蛋白Deltex-1调控时的发育背景。 为此目的,notch 1的活化形式将在转基因小鼠内分泌分化的不同阶段有条件地表达,以确定前体细胞分化可被notch信号抑制的阶段。 还将在转基因小鼠中检查Deltex-1的作用,以确定该蛋白质在胃肠道中是否作为notch的增强剂或拮抗剂发挥作用。 第三个目标将确定在小肠细胞中差异表达的基因,因为它们从隐窝中的内分泌前体分化为绒毛中的终末分化的肠内分泌细胞。 将通过激光显微切割收集不同发育阶段的肠内分泌前体用于RNA提取和制备探针以询问高密度微阵列。 预计这些研究将提供重要的新见解,细胞命运的决定GI内分泌细胞,notch信号在调节内分泌分化的机制,在胃肠道,和基因,可能调节内胚层内分泌分化。 了解前体细胞如何分化为胃肠道内分泌细胞可能会对治疗糖尿病等疾病的潜在新疗法产生影响。 该项目的信息可能有助于开发未来的治疗方法,包括操纵干细胞或诱导其他器官转分化为能够产生胰岛素或其他激素的细胞。
英文摘要
DESCRIPTION (provided by applicant): Differentiation of gastrointestinal endocrine cells depends on the expression and function of basic helix loop helix (bHLH) transcription factors. Notch signaling restricts the number of cells able to adopt an endocrine cell fate in the intestine, stomach, and pancreas by inhibiting the function of bHLH proteins. The overall goal of the proposed research is to determine at what stage of differentiation endocrine progenitor cells can revert to non endocrine cell fates, to determine when in development progenitor cells remain sensitive to the inhibitory effects of notch signaling, and to identify genes activated at different stages of enteroendocrine cell differentiation. Three specific aims are planned. The first aim will use a Cre/Iox based approach in transgenic mice to examine the cell fate of gastrointestinal endocrine precursor cells expressing bHLH proteins. The second aim will determine the developmental context when GI endocrine progenitors are regulated by notch and its associated protein, Deltex-1. For this aim, an activated form of notch 1 will be conditionally expressed at different stages of endocrine differentiation in transgenic mice to determine the stage when precursor cell differentiation can be inhibited by notch signals. The effects of Deltex-1 will also be examined in transgenic mice to determine whether this protein functions as a potentiator or antagonist of notch in the gastrointestinal tract. The third aim will identify genes differentially expressed in cells of the small intestine as they differentiate from endocrine precursors in crypts to terminally differentiated enteroendocrine cells in the villi. Enteroendocrine precursors at different developmental stages will be collected by laser microdissection for RNA extraction and preparation of probes to interrogate high-density microarrays. It is anticipated that these studies will provide important new insights regarding cell fate determination of GI endocrine cells, the mechanism of notch signaling in regulating endocrine differentiation in the GI tract, and genes that may regulate endodermal endocrine differentiation. Understanding how precursor cells become committed to differentiate into gastrointestinal endocrine cells may have an impact on potential new therapies for treating diseases like diabetes mellitus. Information from this project may contribute to the development of future treatments that involve manipulating stem cells or inducing other organs to transdifferentiate into cells capable of producing insulin or other hormones.
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