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斑马鱼腺垂体的形成及其对音猬因子的依赖性。

Adenohypophysis formation in the zebrafish and its dependence on sonic hedgehog.

作者信息

Herzog Wiebke, Zeng Xianchun, Lele Zsolt, Sonntag Carmen, Ting Jing-Wen, Chang Chi-Yao, Hammerschmidt Matthias

机构信息

Max-Planck Institute for Immunobiology, Stuebeweg 51, D-79108, Freiburg, Germany.

出版信息

Dev Biol. 2003 Feb 1;254(1):36-49. doi: 10.1016/s0012-1606(02)00124-0.

Abstract

Formation of the adenohypophysis in mammalian embryos occurs via an invagination of the oral ectoderm to form Rathke's pouch, which becomes exposed to opposing dorsoventral gradients of signaling proteins governing specification of the different hormone-producing pituitary cell types. One signal promoting pituitary cell proliferation and differentiation to ventral cell types is Sonic hedgehog (Shh) from the oral ectoderm. To study pituitary formation and patterning in zebrafish, we cloned four cDNAs encoding different pituitary hormones, prolactin (prl), proopiomelancortin (pomc), thyroid stimulating hormone (tsh), and growth hormone (gh), and analyzed their expression patterns relative to that of the pituitary marker lim3. prl and pomc start to be expressed at the lateral edges of the lim3 expression domain, before pituitary cells move into the head. This indicates that patterning of the pituitary anlage and terminal differentiation of pituitary cells starts while cells are still organized in a placodal fashion at the anterior edge of the developing brain. Following the expression pattern of prl and pomc during development, we show that no pituitary-specific invagination equivalent to Rathke's pouch formation takes place. Rather, pituitary cells move inwards together with stomodeal cells during oral cavity formation, with medial cells of the placode ending up posterior and lateral cells ending up anterior, resulting in an anterior-posterior, rather than a dorsoventral, patterning of the adenohypophysis. Carrying out loss- and gain-of-function experiments, we show that Shh from the ventral diencephalon plays a crucial role during induction, patterning, and growth of the zebrafish adenohypophysis. The phenotypes are very similar to those obtained upon pituitary-specific inactivation or overexpression of Shh in mouse embryo, suggesting that the role of Shh during pituitary development has been largely conserved between fish and mice, despite the different modes of pituitary formation in the two vertebrate classes.

摘要

哺乳动物胚胎中腺垂体的形成是通过口腔外胚层内陷形成拉特克囊,该囊暴露于控制不同激素分泌垂体细胞类型特化的信号蛋白的背腹梯度中。一种促进垂体细胞增殖并分化为腹侧细胞类型的信号是来自口腔外胚层的音猬因子(Shh)。为了研究斑马鱼垂体的形成和模式,我们克隆了四个编码不同垂体激素的cDNA,即催乳素(prl)、促肾上腺皮质激素原(pomc)、促甲状腺激素(tsh)和生长激素(gh),并分析了它们相对于垂体标记物lim3的表达模式。在垂体细胞移入头部之前,prl和pomc开始在lim3表达域的外侧边缘表达。这表明垂体原基的模式形成和垂体细胞的终末分化在细胞仍以基板形式组织于发育中脑的前缘时就开始了。通过追踪prl和pomc在发育过程中的表达模式,我们发现并没有发生与拉特克囊形成相当的垂体特异性内陷。相反,在口腔形成过程中,垂体细胞与口凹细胞一起向内移动,基板的内侧细胞最终位于后部,外侧细胞最终位于前部,从而导致腺垂体前后模式的形成,而非背腹模式。通过进行功能缺失和功能获得实验,我们发现来自腹侧间脑的Shh在斑马鱼腺垂体的诱导、模式形成和生长过程中起着关键作用。这些表型与在小鼠胚胎中垂体特异性失活或过表达Shh时获得的表型非常相似,这表明尽管鱼类和小鼠这两类脊椎动物的垂体形成方式不同,但Shh在垂体发育过程中的作用在很大程度上是保守的。

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