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首页> 外文期刊>Developmental biology >In vivo time-lapse imaging delineates the zebrafish pituitary proopiomelanocortin lineage boundary regulated by FGF3 signal.
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In vivo time-lapse imaging delineates the zebrafish pituitary proopiomelanocortin lineage boundary regulated by FGF3 signal.

机译:体内延时成像描绘了由FGF3信号调节的斑马鱼垂体原黑素皮质激素谱系边界。

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摘要

The anterior pituitary gland (adenohypophysis) comprises anterior and intermediate lobes (the pars distalis and pars intermedia) arising from placodal ectoderm at the anterior neural ridge. Signaling molecules including SHH, FGF, WNT, BMP and Notch are involved in regulating primordial pituitary proliferation and lineage determination. However, morphogenic events and molecular mechanisms governing anterior and intermediate lobe specification are not clear. Pituitary expression of proopiomelanocortin (POMC), the common precursor for adrenocorticotropin (ACTH) of pars distalis corticotropes and alpha-melanocyte-stimulating hormone (alpha-MSH) of pars intermedia melanotropes, provides a unique marker for anterior and intermediate lobe morphogenesis. We performed time-lapse confocal microscopy lineage tracing in live zebrafish embryos expressing GFP driven by the pomc promoter and show distinct migration pathways of POMC cells destined to the anterior and intermediate lobes. Using morpholino oligonucleotides, we show that hypomorphic FGF3 down-regulation induces specific defects of pars intermedia POMC cells while pomc, growth hormone and prolactin expression remain intact in the pars distalis. This lineage-specific process is independent of the FGF3 effect on early pituitary specifying transcription factors as indicated by normal Lim3 and Pit1 expression in hypomorphic FGF3 morphants. These findings suggest that the FGF3 signal, in addition to its previously described role of regulating progenitor proliferation and survival, delineates the melanotrope and corticotrope lineage boundary, contributing to establishment of the pituitary pars distalis and pars intermedia.
机译:垂体前叶(腺垂体)包括前叶和前叶,由前神经脊的睑外胚层形成。信号分子包括SHH,FGF,WNT,BMP和Notch参与调节原始垂体的增殖和谱系确定。然而,尚不清楚控制前叶和中叶规格的形态发生事件和分子机制。垂体前叶皮质促肾上腺皮质促肾上腺皮质激素(ACTH)和中层黑色素皮质激素的α-黑素细胞刺激激素(α-MSH)的常见前体proopiomelanocortin(POMC)的垂体表达为前叶和中叶形态发生提供了独特的标记。我们在表达由pomc启动子驱动的GFP的活斑马鱼胚胎中进行了延时共聚焦显微镜谱系追踪,并显示了注定到前叶和中叶的POMC细胞的独特迁移途径。使用吗啉代寡核苷酸,我们表明,次态FGF3下调诱导pars中间POMC细胞的特定缺陷,而pomc,生长激素和催乳素的表达在远侧pars保持完整。此谱系特异性过程独立于FGF3对早期垂体的转录作用,该转录因子由亚型FGF3 morphant中的正常Lim3和Pit1表达表示。这些发现表明,除了先前描述的调节祖细胞增殖和存活的作用外,FGF3信号还描绘了黑素体和皮质激素谱系的边界,有助于垂体远端垂体和中间垂体的建立。

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