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Graded Hedgehog and Fibroblast Growth Factor Signaling Independently Regulate Pituitary Cell Fates and Help Establish the Pars Distalis and Pars Intermedia of the Zebrafish Adenohypophysis

机译:分级的刺猬和成纤维细胞生长因子信号独立地调节垂体细胞的命运并帮助建立斑马鱼的垂体和垂体中间垂体。

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摘要

The vertebrate adenohypophysis forms as a placode at the anterior margin of the neural plate, requiring both hedgehog (Hh) and fibroblast growth factor (Fgf) mediated cell-cell signaling for induction and survival of endocrine cell types. Using small molecule inhibitors to modulate signaling levels during zebrafish development we show that graded Hh and Fgf signaling independently help establish the two subdomains of the adenohypophysis, the anteriorly located pars distalis (PD) and the posterior pars intermedia (PI). High levels of Hh signaling are required for formation of the PD and differentiation of anterior endocrine cell types, whereas lower levels of Hh signaling are required for formation of the PI and differentiation of posterior endocrine cell types. In contrast, high Fgf signaling levels are required for formation of the PI and posterior endocrine cell differentiation, whereas anterior regions require lower levels of Fgf signaling. Based on live observations and marker analyses, we show that the PD forms first at the midline closest to the central nervous system source of Sonic hedgehog. In contrast the PI appears to form from more lateral/posterior cells close to a central nervous system source of Fgf3. Together our data show that graded Hh and Fgf signaling independently direct induction of the PD and PI and help establish endocrine cell fates along the anterior/posterior axis of the zebrafish adenohypophysis. These data suggest that there are distinct origins and signaling requirements for the PD and PI.
机译:脊椎动物腺垂体在神经板的前缘形成斑块,需要刺猬(Hh)和成纤维细胞生长因子(Fgf)介导的细胞信号传导来诱导和存活内分泌细胞类型。我们使用小分子抑制剂来调节斑马鱼发育过程中的信号水平,我们证明了分级的Hh和Fgf信号独立地帮助建立了垂体腺的两个亚结构域,即位于远端的pars远侧(PD)和位于中间的pars interparis(PI)。 PD的形成和前内分泌细胞类型的分化需要高水平的Hh信号传导,而PI的形成和后内分泌细胞类型的分化则需要较低的Hh信号传导。相反,PI形成和后内分泌细胞分化需要高Fgf信号水平,而前区需要较低水平的Fgf信号水平。根据现场观察和标记分析,我们显示PD首先在最接近Sonic刺猬的中枢神经系统来源的中线形成。相反,PI似乎是由更多靠近Fgf3的中枢神经系统来源的外侧/后部细胞形成的。我们的数据一起表明,分级的Hh和Fgf信号独立地指导PD和PI的诱导,并帮助沿着斑马鱼腺垂体的前/后轴建立内分泌细胞的命运。这些数据表明,PD和PI有不同的起源和信令要求。

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