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首页> 外文期刊>Development >Fgf3 signaling from the ventral diencephalon is required for early specification and subsequent survival of the zebrafish adenohypophysis.
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Fgf3 signaling from the ventral diencephalon is required for early specification and subsequent survival of the zebrafish adenohypophysis.

机译:腹侧间脑的Fgf3信号传导是斑马鱼腺垂体的早期规范和后续生存所必需的。

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摘要

The pituitary gland consists of two major parts: the neurohypophysis, which is of neural origin; and the adenohypophysis, which is of non-neural ectodermal origin. Development of the adenohypophysis is governed by signaling proteins from the infundibulum, a ventral structure of the diencephalon that gives rise to the neurohypophysis. In mouse, the fibroblast growth factors Fgf8, Fgf10 and Fgf18 are thought to affect multiple processes of pituitary development: morphogenesis and patterning of the adenohypophyseal anlage; and survival, proliferation and differential specification of adenohypophyseal progenitor cells. Here, we investigate the role of Fgf3 during pituitary development in the zebrafish, analyzing lia/fgf3 null mutants. We show that Fgf3 signaling from the ventral diencephalon is required in a non-cell autonomous fashion to induce the expression of lim3, pit1 and other pituitary-specific genes in the underlying adenohypophyseal progenitor cells. Despite the absence of such early specification steps, fgf3 mutants continue to form a distinct pituitary anlage of normal size and shape, until adenohypophyseal cells die by apoptosis. We further show that Sonic Hedgehog (Shh) cannot rescue pituitary development, although it is able to induce adenohypophyseal cells in ectopic placodal regions of fgf3 mutants, indicating that Fgf3 does not act via Shh, and that Shh can act independently of Fgf3. In sum, our data suggest that Fgf3 signaling primarily promotes the transcriptional activation of genes regulating early specification steps of adenohypophyseal progenitor cells. This early specification seems to be essential for the subsequent survival of pituitary cells, but not for pituitary morphogenesis or pituitary cell proliferation.
机译:垂体由两个主要部分组成:神经垂体,它是神经起源的。和非神经外胚层起源的腺垂体。腺垂体的发育受来自漏斗的信号蛋白控制,漏斗是双脑的腹侧结构,引起神经垂体。在小鼠中,成纤维细胞生长因子Fgf8,Fgf10和Fgf18被认为会影响垂体发育的多个过程:腺垂体l突的形态发生和模式;腺垂体祖细胞的存活,增殖和差异指标。在这里,我们调查斑马鱼垂体发育过程中Fgf3的作用,分析lia / fgf3 null突变体。我们显示,从腹侧间脑的Fgf3信号以非细胞自主方式被诱导,以在基础腺垂体祖细胞中诱导lim3,pit1和其他垂体特异性基因的表达。尽管没有这种早期的规范步骤,fgf3突变体仍继续形成正常大小和形状的垂体垂体,直至腺垂体细胞因凋亡而死亡。我们进一步表明,声波刺猬(Shh)不能挽救垂体的发展,尽管它能够在fgf3突变体的异位斑状区域诱导腺垂体细胞,表明Fgf3不通过Shh作用,并且Shh可以独立于Fgf3作用。总而言之,我们的数据表明Fgf3信号传导主要促进调节腺垂体祖细胞早期规范步骤的基因的转录激活。早期的规范似乎对于垂体细胞的后续存活是必不可少的,但对于垂体形态发生或垂体细胞增殖则不是必需的。

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