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Gli3 coordinates three-dimensional patterning and growth of the tectum and cerebellum by integrating Shh and Fgf8 signaling.

机译:Gli3通过整合Shh和Fgf8信号传导,协调了顶盖和小脑的三维构图和生长。

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摘要

The coordination of anterior-posterior (AP) and dorsal-ventral (DV) patterning of the mesencephalon (mes) and rhombomere 1 (r1) is instrumental for the development of three distinct brain structures: the tectum and cerebellum dorsally and the tegmentum ventrally. Patterning of the mes/r1 is primarily mediated by signaling molecules secreted from two organizers: sonic hedgehog (Shh) from the floor plate (DV) and Fgf8 from the isthmus (AP). Gli3, a zinc-finger transcription factor in the Shh signaling pathway, has been implicated in regulating Fgf8 expression and is therefore a potential candidate for coordinating the action of the two organizers. By inactivating mouse Gli3 at successive embryonic time points in vivo, we uncovered the extent and the underlying mechanism of Gli3 function in the mes/r1. We demonstrate that before E9.0, Gli3 is required for establishing a distinct posterior tectum, isthmus and cerebellum, but does not play a role in the development of the tegmentum. Between E9.0 and E11.0, Gli3 continues to be required for isthmus and cerebellum development, but primarily for defining the cerebellar foliation pattern. We show that Gli3 regulates patterning of the isthmus and cerebellar anlage by confining Fgf8 expression to the isthmus, and attenuates growth of dorsal r1 (before E11.0) and the dorsal mes and isthmus (beyond E11.0) through regulation of cell proliferation and viability. In conclusion, our results show that Gli3 is essential for the coordinated three-dimensional patterning and growth of the dorsal mes/r1.
机译:中脑(mes)和rhombomere 1(r1)的前后(AP)和背腹(DV)模式的协调有助于三个不同的大脑结构的发展:背侧的顶盖和小脑以及腹侧的盖骨。 mes / r1的模式主要由两个组织者分泌的信号分子介导:地板(DV)的声音刺猬(Shh)和峡部(AP)的Fgf8。 Gli3,Shh信号通路中的锌指转录因子,已参与调节Fgf8的表达,因此是协调两个组织者的作用的潜在候选人。通过在体内连续的胚胎时间点灭活小鼠Gli3,我们发现了mes / r1中Gli3功能的程度和潜在机制。我们证明,在E9.0之前,Gli3是建立明显的后盖,峡部和小脑所必需的,但在盖骨的发育中不起作用。在E9.0和E11.0之间,地峡和小脑发育仍然需要Gli3,但主要是为了定义小脑的叶型。我们显示,Gli3通过将Fgf8表达限制在地峡中来调节地峡和小脑an骨的模式,并通过调节细胞增殖和增殖来减弱背侧r1(在E11.0之前)以及背中和地峡(在E11.0之前)的生长。可行性。总而言之,我们的结果表明,Gli3对于背侧mes / r1的三维三维构图和生长至关重要。

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