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Lmx1b对尾端脊椎动物中枢神经系统顶板发育及信号传导的调控

Control of roof plate development and signaling by Lmx1b in the caudal vertebrate CNS.

作者信息

Chizhikov Victor V, Millen Kathleen J

机构信息

Department of Human Genetics, University of Chicago, Chicago, Illinois 60637, USA.

出版信息

J Neurosci. 2004 Jun 23;24(25):5694-703. doi: 10.1523/JNEUROSCI.0758-04.2004.

Abstract

Numerous studies have identified the roof plate as an important signaling center controlling dorsal interneuron specification and differentiation in the developing spinal cord. Currently, the molecular pathways of roof plate formation and function are poorly understood. We determined that the LIM-homeodomain transcription factor Lmx1b is sufficient to induce functional roof plate in the early chick developing spinal cord. In the chick, Lmx1b acts upstream of Lmx1a in the roof plate developmental program. Once the roof plate forms, we show that Bmp and Wnt signaling are the major components of Lmx1a/b-dependent roof plate dorsal patterning activity. The roof plate function of Lmx1b is not conserved across vertebrates because Lmx1b is not expressed in mouse roof plate progenitors. Instead, mouse caudal CNS roof plate formation relies entirely on Lmx1a. Lmx1b can, however, partially rescue roof plate development in dreher (Lmx1a-/-) mice, indicating that Lmx1b has some functional redundancy to Lmx1a. Furthermore, we demonstrate that the roof plate-inducing activity of Lmx1b can be suppressed by Mash1 (Cash1), which is normally expressed in intermediate neural tube in both chick and mouse. Our data identify Lmx1b as a key regulator of spinal cord roof plate induction and function.

摘要

众多研究已将顶板确定为控制发育中脊髓背侧中间神经元特化和分化的重要信号中心。目前,对顶板形成和功能的分子途径了解甚少。我们确定,LIM同源结构域转录因子Lmx1b足以在鸡胚早期发育的脊髓中诱导功能性顶板。在鸡中,Lmx1b在顶板发育程序中作用于Lmx1a的上游。一旦顶板形成,我们发现骨形态发生蛋白(Bmp)和Wnt信号是依赖Lmx1a/b的顶板背侧模式化活动的主要组成部分。Lmx1b的顶板功能在脊椎动物中并不保守,因为Lmx1b在小鼠顶板祖细胞中不表达。相反,小鼠尾侧中枢神经系统顶板的形成完全依赖于Lmx1a。然而,Lmx1b可以部分挽救德雷尔(Lmx1a-/-)小鼠的顶板发育,这表明Lmx1b与Lmx1a具有一定的功能冗余。此外,我们证明Lmx1b的顶板诱导活性可以被Mash1(Cash1)抑制,Mash1通常在鸡和小鼠的神经管中部表达。我们的数据确定Lmx1b是脊髓顶板诱导和功能的关键调节因子。

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