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Molecular and Cellular Basis of Pharyngeal Pouch Development

Molecular and Cellular Basis of Pharyngeal Pouch Development
咽袋发育的分子和细胞基础
批准号:
8846094
负责人:
Gage D Crump
金额:
$39.89万
依托单位国家:
美国
项目类别:
财政年份:
2013
资助国家:
美国
项目状态:
已结题
起止时间:
2013-07-18 至 2016-05-31

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中文摘要
翻译
描述(由申请人提供):面部上皮,包括咽袋,是组织头部发育的重要信号中心。人类出生缺陷如迪乔治综合征导致面部骨骼、心脏和腺体(如甲状旁腺和胸腺)的各种发育异常。然而,我们对眼袋形成的遗传控制和细胞行为知之甚少。本提案的长期目标是了解diggeorge综合征基因Tbx1如何与Fgf和Wnt信号通路相互作用,以精确控制驱动眼袋形成的上皮转变。在这项提议中,我们使用创新的转基因和突变工具在斑马鱼中评估发育基因在育儿袋前内胚层中的功能。我们将其与活胚胎中育儿袋发育的延时成像相结合,这使我们能够了解这些基因如何控制特定的育儿袋细胞行为。斑马鱼非常适合这些研究,因为人类的育儿袋发育高度保守,但斑马鱼是唯一一种可以进行高通量转基因研究和单细胞分辨率延时成像的脊椎动物系统。这项工作的积极发现将阐明Tbx1如何在上游激活Wnt和Fgf信号级联,从而驱动眼袋发育。特别是,Wnt通路基因将成为潜在和/或修饰人类出生缺陷(如迪乔治综合征和菲佛综合征)的新候选基因。由于胚胎内胚层的分支不仅会产生囊,还会产生肝脏、胰腺、肺和其他器官,因此我们的研究也将对理解许多重要内胚层器官的初始形成具有普遍意义。
英文摘要
DESCRIPTION (provided by applicant): Facial epithelia, including the pharyngeal pouches, are important signaling centers that organize development of the head. Defects in pouch formation in human birth defects such as DiGeorge Syndrome result in a variety of developmental abnormalities of the facial skeleton, heart, and glands (e.g. parathyroid and thymus). However, we still know little about the genetic control and cellular behaviors underlying pouch formation. The long-term goal of this proposal is to understand how the DiGeorge Syndrome gene Tbx1 interacts with Fgf and Wnt signaling pathways to precisely control the epithelial transitions that drive pouch formation. In this proposal, we use innovative transgenic and mutant tools in zebrafish to assess the function of developmental genes in the pre-pouch endoderm. We combine this with time-lapse imaging of pouch development in living embryos, which allows us to understand how these genes control specific pouch cell behaviors. Zebrafish is ideally suited for these studies as pouch development is highly conserved with humans, yet zebrafish is the only vertebrate system in which high-throughout transgenic studies and single-cell- resolution time-lapse imaging are practical. Positive findings from this work will elucidate how Tbx1 acts upstream to activate Wnt and Fgf signaling cascades that drive pouch development. In particular, Wnt pathway genes will represent novel candidates for underlying and/or modifying human birth defects such as DiGeorge and Pfeiffer Syndromes. As branching of the embryonic endoderm generates not only pouches but also the liver, pancreas, lung, and other organs, lessons learned from our studies will also have general implications for understanding the initial formation of many important endodermal organs.
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